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p53 ac  (Santa Cruz Biotechnology)


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    Structured Review

    Santa Cruz Biotechnology p53 ac
    P53 Ac, supplied by Santa Cruz Biotechnology, used in various techniques. Bioz Stars score: 96/100, based on 9275 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/ac+p53/p53/10__1007_slash_s12038___025___00558___8-48-12-19
    Average 96 stars, based on 9275 article reviews
    p53 ac - by Bioz Stars, 2026-09
    96/100 stars

    Images

    Related Articles

    Incubation:

    Article Title: Cudratricusxanthone A attenuates sepsis-induced liver injury via SIRT1 signaling.
    Article Snippet: *Corresponding Authors: Wonhwa Lee, Ph.D. College of Pharmacy, Kyungpook National University, 80 Dahak-ro, Buk-gu, Daegu 41566, Republic of Korea Phone: 82-53-950-8570; Fax: 82-53-950-8557; E-mail: bywonhwalee@gmail.com and Jong-Sup Bae, Ph.D. College of Pharmacy, Kyungpook National University, 80 Dahak-ro, Buk-gu, Daegu 41566, Republic of Korea Phone: 82-53-950-8570; Fax: 82-53-950-8557; E-mail: baejs@knu.ac.kr

    other:

    Article Title: Increasing Muscle Hypertrophy with a Natural Product Designed to Inhibit SIRT1
    Article Snippet: Antibodies were from Cell Signaling Technology (Danvers, MA, United States)-total eEF2 (CS-2332S), p-53 (CS-2524S), phospho-eEF2 (CS-2331S), SIRT1 (CS-947S), Ac-Lys (CS9441S), phospho-S6 (CS-5364S), Ac-p53 (CS-252S), P-AKT (Ser473) (CS-4060S), Cytochrome-C (CS-4280S); Santa Cruz Biotechnology (Santa Cruz, CA, United States)-rps6 (SC-13007), rpL13a (SC-390131), Dystrophin (SC-465954); Abcam (Cambridge, UK)-Total OxPhos (ab110413); and Millipore-puromycin (MABE343).

    Protein Concentration:

    Article Title: TdIF1: a putative oncogene in NSCLC tumor progression
    Article Snippet: .. The protein concentration was determined by the Bio-Rad protein assay, and 40 μg of cell lysate from each group was separated on a 10% SDS-PAGE gel, transferred to a nitrocellulose membrane, and probed separately with mouse anti-human TdIF1, p53, Ac-p53, HDAC1, HDAC2 and GAPDH mAbs (Santa Cruz Biotechnology) according to the manufacturer's instructions, and the bands were visualized using an ECL assay kit (Pierce, Rockford, IL, USA). ..

    SDS Page:

    Article Title: TdIF1: a putative oncogene in NSCLC tumor progression
    Article Snippet: .. The protein concentration was determined by the Bio-Rad protein assay, and 40 μg of cell lysate from each group was separated on a 10% SDS-PAGE gel, transferred to a nitrocellulose membrane, and probed separately with mouse anti-human TdIF1, p53, Ac-p53, HDAC1, HDAC2 and GAPDH mAbs (Santa Cruz Biotechnology) according to the manufacturer's instructions, and the bands were visualized using an ECL assay kit (Pierce, Rockford, IL, USA). ..

    Membrane:

    Article Title: TdIF1: a putative oncogene in NSCLC tumor progression
    Article Snippet: .. The protein concentration was determined by the Bio-Rad protein assay, and 40 μg of cell lysate from each group was separated on a 10% SDS-PAGE gel, transferred to a nitrocellulose membrane, and probed separately with mouse anti-human TdIF1, p53, Ac-p53, HDAC1, HDAC2 and GAPDH mAbs (Santa Cruz Biotechnology) according to the manufacturer's instructions, and the bands were visualized using an ECL assay kit (Pierce, Rockford, IL, USA). ..

    Western Blot:

    Article Title: Transiently formed nucleus-to-cilium microtubule arrays mediate senescence initiation in a KIFC3-dependent manner
    Article Snippet: Chemical luminescence (BIO-RAD) was used to develop signal and images were obtained using ChemiDoc Touch Imaging System (BIO-RAD). .. Primary antibodies: α-tubulin (HPA043684; dilution 1:500 for immunofluorescent), CENEXIN1 (HPA001874; 1:500 for western blotting) from Atlas antibodies; EB1 (sc-47704; dilution 1:500 for immunofluorescent), PML (PG-M3) (sc-966; dilution 1:1000 for immunofluorescent), HYLS1 (D-9) (sc-376721; dilution 1:200 for immunofluorescent), p21 (sc-6246; dilution 1:500 for western blotting), GFP tag (sc9996; dilution 1:1000 for western blotting), CDK5RAP2 (sc-517321; dilution 1:1000 for western blotting) from Santa Cruz; ac-p53 (2525; dilution 1:1000 for western blotting), Phospho-Rb (Ser807/811) (8516; dilution 1:1000 for western blotting), Rb (9313; dilution 1:1000 for western blotting), p53 (2527; dilution 1:1000 for western blotting) from Cell Signaling technology; ciliary base marker CENTRIN2 (20H5, a generous gift from Jeffrey Salisbury; dilution 1:250 for immunofluorescent), FBF1 (11531-1-AP; dilution 1:500 for immunofluorescent and 1:1000 for western blotting), p16INK4a (10883-1-AP; dilution 1:1000 for western blotting), KIFC3 (10125-2-AP; dilution 1:1000 for immunofluorescent and western blotting), CAMSAP2 (17880-1-AP; dilution 1:500 for immunofluorescent), HA tag (51064-2-AP; dilution 1:1000 for immunofluorescent) from Proteintech; glutamylated tubulin (GT335) (AG-20B-0020-C100; dilution 1:500 for immunofluorescent and 1:1000 for western blotting) from AdipoGen Life Science; v5 tag (MA5-15253; dilution 1:1000 for immunofluorescent, 1:1000 for western blotting, and 1 μg for immunoprecipitation), α-tubulin (A11126; dilution 1:100 for immunofluorescent), NESPRIN-1 (PA5-115640; dilution 1:500 for immunofluorescent), ARL13B (66739-1-IG; dilution 1:500 for immunofluorescent), CDK5RAP2 (702394; dilution 1:500 for immunofluorescent) from Invitrogen; acetylated tubulin (T7451, dilution 1:5000 for immunofluorescent), β-actin (A1978; dilution 1:2000 for western blotting), γ-tubulin (T5326; dilution 1:1000 for immunofluorescent), Myc tag (SAB2702192; dilution 1:2000 for western blotting), FLAG tag (F1804; dilution 1:1000 for immunofluorescent) from Sigma; CENEXIN1 (H00004957-M01; dilution 1:500 for immunofluorescent) from Abnova; NUP153 (ab84872; dilution 1:1000 for immunofluorescent.) from Abcam. .. Secondary antibodies: Peroxidase-AffiniPure Goat anti-mouse (111-035-144) or anti-rabbit (115-035-146) from Jackson ImmunoResearch Laboratories, dilution 1:2000 for western blotting.

    Marker:

    Article Title: Transiently formed nucleus-to-cilium microtubule arrays mediate senescence initiation in a KIFC3-dependent manner
    Article Snippet: Chemical luminescence (BIO-RAD) was used to develop signal and images were obtained using ChemiDoc Touch Imaging System (BIO-RAD). .. Primary antibodies: α-tubulin (HPA043684; dilution 1:500 for immunofluorescent), CENEXIN1 (HPA001874; 1:500 for western blotting) from Atlas antibodies; EB1 (sc-47704; dilution 1:500 for immunofluorescent), PML (PG-M3) (sc-966; dilution 1:1000 for immunofluorescent), HYLS1 (D-9) (sc-376721; dilution 1:200 for immunofluorescent), p21 (sc-6246; dilution 1:500 for western blotting), GFP tag (sc9996; dilution 1:1000 for western blotting), CDK5RAP2 (sc-517321; dilution 1:1000 for western blotting) from Santa Cruz; ac-p53 (2525; dilution 1:1000 for western blotting), Phospho-Rb (Ser807/811) (8516; dilution 1:1000 for western blotting), Rb (9313; dilution 1:1000 for western blotting), p53 (2527; dilution 1:1000 for western blotting) from Cell Signaling technology; ciliary base marker CENTRIN2 (20H5, a generous gift from Jeffrey Salisbury; dilution 1:250 for immunofluorescent), FBF1 (11531-1-AP; dilution 1:500 for immunofluorescent and 1:1000 for western blotting), p16INK4a (10883-1-AP; dilution 1:1000 for western blotting), KIFC3 (10125-2-AP; dilution 1:1000 for immunofluorescent and western blotting), CAMSAP2 (17880-1-AP; dilution 1:500 for immunofluorescent), HA tag (51064-2-AP; dilution 1:1000 for immunofluorescent) from Proteintech; glutamylated tubulin (GT335) (AG-20B-0020-C100; dilution 1:500 for immunofluorescent and 1:1000 for western blotting) from AdipoGen Life Science; v5 tag (MA5-15253; dilution 1:1000 for immunofluorescent, 1:1000 for western blotting, and 1 μg for immunoprecipitation), α-tubulin (A11126; dilution 1:100 for immunofluorescent), NESPRIN-1 (PA5-115640; dilution 1:500 for immunofluorescent), ARL13B (66739-1-IG; dilution 1:500 for immunofluorescent), CDK5RAP2 (702394; dilution 1:500 for immunofluorescent) from Invitrogen; acetylated tubulin (T7451, dilution 1:5000 for immunofluorescent), β-actin (A1978; dilution 1:2000 for western blotting), γ-tubulin (T5326; dilution 1:1000 for immunofluorescent), Myc tag (SAB2702192; dilution 1:2000 for western blotting), FLAG tag (F1804; dilution 1:1000 for immunofluorescent) from Sigma; CENEXIN1 (H00004957-M01; dilution 1:500 for immunofluorescent) from Abnova; NUP153 (ab84872; dilution 1:1000 for immunofluorescent.) from Abcam. .. Secondary antibodies: Peroxidase-AffiniPure Goat anti-mouse (111-035-144) or anti-rabbit (115-035-146) from Jackson ImmunoResearch Laboratories, dilution 1:2000 for western blotting.

    Immunoprecipitation:

    Article Title: Transiently formed nucleus-to-cilium microtubule arrays mediate senescence initiation in a KIFC3-dependent manner
    Article Snippet: Chemical luminescence (BIO-RAD) was used to develop signal and images were obtained using ChemiDoc Touch Imaging System (BIO-RAD). .. Primary antibodies: α-tubulin (HPA043684; dilution 1:500 for immunofluorescent), CENEXIN1 (HPA001874; 1:500 for western blotting) from Atlas antibodies; EB1 (sc-47704; dilution 1:500 for immunofluorescent), PML (PG-M3) (sc-966; dilution 1:1000 for immunofluorescent), HYLS1 (D-9) (sc-376721; dilution 1:200 for immunofluorescent), p21 (sc-6246; dilution 1:500 for western blotting), GFP tag (sc9996; dilution 1:1000 for western blotting), CDK5RAP2 (sc-517321; dilution 1:1000 for western blotting) from Santa Cruz; ac-p53 (2525; dilution 1:1000 for western blotting), Phospho-Rb (Ser807/811) (8516; dilution 1:1000 for western blotting), Rb (9313; dilution 1:1000 for western blotting), p53 (2527; dilution 1:1000 for western blotting) from Cell Signaling technology; ciliary base marker CENTRIN2 (20H5, a generous gift from Jeffrey Salisbury; dilution 1:250 for immunofluorescent), FBF1 (11531-1-AP; dilution 1:500 for immunofluorescent and 1:1000 for western blotting), p16INK4a (10883-1-AP; dilution 1:1000 for western blotting), KIFC3 (10125-2-AP; dilution 1:1000 for immunofluorescent and western blotting), CAMSAP2 (17880-1-AP; dilution 1:500 for immunofluorescent), HA tag (51064-2-AP; dilution 1:1000 for immunofluorescent) from Proteintech; glutamylated tubulin (GT335) (AG-20B-0020-C100; dilution 1:500 for immunofluorescent and 1:1000 for western blotting) from AdipoGen Life Science; v5 tag (MA5-15253; dilution 1:1000 for immunofluorescent, 1:1000 for western blotting, and 1 μg for immunoprecipitation), α-tubulin (A11126; dilution 1:100 for immunofluorescent), NESPRIN-1 (PA5-115640; dilution 1:500 for immunofluorescent), ARL13B (66739-1-IG; dilution 1:500 for immunofluorescent), CDK5RAP2 (702394; dilution 1:500 for immunofluorescent) from Invitrogen; acetylated tubulin (T7451, dilution 1:5000 for immunofluorescent), β-actin (A1978; dilution 1:2000 for western blotting), γ-tubulin (T5326; dilution 1:1000 for immunofluorescent), Myc tag (SAB2702192; dilution 1:2000 for western blotting), FLAG tag (F1804; dilution 1:1000 for immunofluorescent) from Sigma; CENEXIN1 (H00004957-M01; dilution 1:500 for immunofluorescent) from Abnova; NUP153 (ab84872; dilution 1:1000 for immunofluorescent.) from Abcam. .. Secondary antibodies: Peroxidase-AffiniPure Goat anti-mouse (111-035-144) or anti-rabbit (115-035-146) from Jackson ImmunoResearch Laboratories, dilution 1:2000 for western blotting.

    FLAG-tag:

    Article Title: Transiently formed nucleus-to-cilium microtubule arrays mediate senescence initiation in a KIFC3-dependent manner
    Article Snippet: Chemical luminescence (BIO-RAD) was used to develop signal and images were obtained using ChemiDoc Touch Imaging System (BIO-RAD). .. Primary antibodies: α-tubulin (HPA043684; dilution 1:500 for immunofluorescent), CENEXIN1 (HPA001874; 1:500 for western blotting) from Atlas antibodies; EB1 (sc-47704; dilution 1:500 for immunofluorescent), PML (PG-M3) (sc-966; dilution 1:1000 for immunofluorescent), HYLS1 (D-9) (sc-376721; dilution 1:200 for immunofluorescent), p21 (sc-6246; dilution 1:500 for western blotting), GFP tag (sc9996; dilution 1:1000 for western blotting), CDK5RAP2 (sc-517321; dilution 1:1000 for western blotting) from Santa Cruz; ac-p53 (2525; dilution 1:1000 for western blotting), Phospho-Rb (Ser807/811) (8516; dilution 1:1000 for western blotting), Rb (9313; dilution 1:1000 for western blotting), p53 (2527; dilution 1:1000 for western blotting) from Cell Signaling technology; ciliary base marker CENTRIN2 (20H5, a generous gift from Jeffrey Salisbury; dilution 1:250 for immunofluorescent), FBF1 (11531-1-AP; dilution 1:500 for immunofluorescent and 1:1000 for western blotting), p16INK4a (10883-1-AP; dilution 1:1000 for western blotting), KIFC3 (10125-2-AP; dilution 1:1000 for immunofluorescent and western blotting), CAMSAP2 (17880-1-AP; dilution 1:500 for immunofluorescent), HA tag (51064-2-AP; dilution 1:1000 for immunofluorescent) from Proteintech; glutamylated tubulin (GT335) (AG-20B-0020-C100; dilution 1:500 for immunofluorescent and 1:1000 for western blotting) from AdipoGen Life Science; v5 tag (MA5-15253; dilution 1:1000 for immunofluorescent, 1:1000 for western blotting, and 1 μg for immunoprecipitation), α-tubulin (A11126; dilution 1:100 for immunofluorescent), NESPRIN-1 (PA5-115640; dilution 1:500 for immunofluorescent), ARL13B (66739-1-IG; dilution 1:500 for immunofluorescent), CDK5RAP2 (702394; dilution 1:500 for immunofluorescent) from Invitrogen; acetylated tubulin (T7451, dilution 1:5000 for immunofluorescent), β-actin (A1978; dilution 1:2000 for western blotting), γ-tubulin (T5326; dilution 1:1000 for immunofluorescent), Myc tag (SAB2702192; dilution 1:2000 for western blotting), FLAG tag (F1804; dilution 1:1000 for immunofluorescent) from Sigma; CENEXIN1 (H00004957-M01; dilution 1:500 for immunofluorescent) from Abnova; NUP153 (ab84872; dilution 1:1000 for immunofluorescent.) from Abcam. .. Secondary antibodies: Peroxidase-AffiniPure Goat anti-mouse (111-035-144) or anti-rabbit (115-035-146) from Jackson ImmunoResearch Laboratories, dilution 1:2000 for western blotting.



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    Cell Signaling Technology Inc rabbit anti ac p53
    A , B HUH7 and C , D Hep3B cells were transfected with an empty vector (Vehicle) or ATGL-overexpressing construct (ATGL-OE) for 24 h and then treated with 50 µM etoposide or 2 µM doxorubicin for 6 h. Western blot analysis of γH2AX levels was performed. E Western blot analysis <t>of</t> <t>Ac-p53</t> <t>Lys-382,</t> p-p53 Ser-15 and p53 levels was performed in HepG2 cells after treatment with 50 µM etoposide for 2, 4, 6 and 24 h. F Densitometric ratios of Ac-p53 and p-p53 after treatment with 50 µM etoposide for 2, 4, 6 and 24 h. G – I HepG2 cells were transfected with empty vector (Vehicle) or ATGL-overexpressing (ATGL-OE) construct and, after 24 h, treated with 50 µM etoposide for 6 h with or without 10 µM C646 for 24 h. Western blot analysis of Ac-p53 Lys-382, p-p53 Ser-15 and p53 levels was performed. H Densitometric analysis ratios of Ac-p53 and p-p53 after treatment with 50 µM etoposide for 6 h. J – L HepG2 cells were treated with 50 µM etoposide for 6 h with or without 1 µM GW7647 for 24 h. Western blot analysis of Ac-p53 Lys-382, p-p53 Ser-15, p53 and γH2AX levels was performed. K Densitometric analysis of ratio between Ac-p53 and p-p53 expression after treatment with 50 µM etoposide for 6 h. The images are representative of three independent experiments that yielded similar results. β-Actin and ATGL were used as loading and transfection controls, respectively. The data are presented as the means ± SDs from three independent experiments. Statistical significance was determined by Student t test and one-way ANOVA with Tukey’s post hoc test; * p < 0.05, ** p < 0.01, *** p < 0.001 vs CTRL or as indicated by brackets.
    Rabbit Anti Ac P53, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Cell Signaling Technology Inc rabbit monoclonal antibodies against ac p53
    A , B HUH7 and C , D Hep3B cells were transfected with an empty vector (Vehicle) or ATGL-overexpressing construct (ATGL-OE) for 24 h and then treated with 50 µM etoposide or 2 µM doxorubicin for 6 h. Western blot analysis of γH2AX levels was performed. E Western blot analysis <t>of</t> <t>Ac-p53</t> <t>Lys-382,</t> p-p53 Ser-15 and p53 levels was performed in HepG2 cells after treatment with 50 µM etoposide for 2, 4, 6 and 24 h. F Densitometric ratios of Ac-p53 and p-p53 after treatment with 50 µM etoposide for 2, 4, 6 and 24 h. G – I HepG2 cells were transfected with empty vector (Vehicle) or ATGL-overexpressing (ATGL-OE) construct and, after 24 h, treated with 50 µM etoposide for 6 h with or without 10 µM C646 for 24 h. Western blot analysis of Ac-p53 Lys-382, p-p53 Ser-15 and p53 levels was performed. H Densitometric analysis ratios of Ac-p53 and p-p53 after treatment with 50 µM etoposide for 6 h. J – L HepG2 cells were treated with 50 µM etoposide for 6 h with or without 1 µM GW7647 for 24 h. Western blot analysis of Ac-p53 Lys-382, p-p53 Ser-15, p53 and γH2AX levels was performed. K Densitometric analysis of ratio between Ac-p53 and p-p53 expression after treatment with 50 µM etoposide for 6 h. The images are representative of three independent experiments that yielded similar results. β-Actin and ATGL were used as loading and transfection controls, respectively. The data are presented as the means ± SDs from three independent experiments. Statistical significance was determined by Student t test and one-way ANOVA with Tukey’s post hoc test; * p < 0.05, ** p < 0.01, *** p < 0.001 vs CTRL or as indicated by brackets.
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    Image Search Results


    A) Immunoblotting of pan-acetyl lysine from mouse livers. B) Immunoblot for γH2Ax and pan-acetyl lysine on chromatin fractions isolated from GFP- or ATGL-overexpressing AML12 cells. Cells were incubated in etoposide for 3 hours (“etop acute”) or allowed to recover for 3 hours after etoposide treatment (“etop recov”). C) Primary MEFs were pre-treated for 12 hours with various HAT inhibitors. Cells were then incubated in etoposide + inhibitors for 6 hours. Immunofluorescence was performed for γH2Ax, and cells were imaged using the Agilent Gen5 Cytation. CPTH2 = Gcn5 inhibitor, Nu9056 = Tip60 inhibitor, WM1119 = KAT6A inhibitor, A485 = p300 inhibitor. Quantification of γH2Ax positive cells (>2 foci per nucleus). Statistics: one-way ANOVA with Tukey’s post hoc test. Error bars indicate mean +/-SEM. *=p<0.05, **=p<0.01, ****=p<0.0001. D) Pathway analysis of AKI versus WT with differentially expressed genes (FDR 0.2) was performed with the TRRUST database. Top pathways shown with NES (normalized enrichment score). E) Representative images of p53 and ac-p53 (K379) immunofluorescence in AML12 cells overexpressing ATGL or Null control. Quantification of p53 and ac-p53 nuclear intensity (left) and nuclear intensity/cytoplasmic intensity (right). F) RT-qPCR of p53 target genes in WT and AKI Primary MEFs treated with etoposide for 3 hours, followed by 6 hours of recovery. G) AML12 cells were transduced with ATGL or a Null virus control. Cells were treated with A485 for 12 hours, followed by 60 minutes of etoposide treatment, followed by immunostaining for p53. *=p<0.05, **p<0.01. H) Primary MEFs were transfected with a pooled p53 siRNA and treated with etoposide for 3 hours, followed by a 1-hour recovery, and assayed for p53 and γH2Ax.

    Journal: bioRxiv

    Article Title: ATGL-catalyzed lipid catabolism promotes DNA repair

    doi: 10.64898/2026.04.03.716381

    Figure Lengend Snippet: A) Immunoblotting of pan-acetyl lysine from mouse livers. B) Immunoblot for γH2Ax and pan-acetyl lysine on chromatin fractions isolated from GFP- or ATGL-overexpressing AML12 cells. Cells were incubated in etoposide for 3 hours (“etop acute”) or allowed to recover for 3 hours after etoposide treatment (“etop recov”). C) Primary MEFs were pre-treated for 12 hours with various HAT inhibitors. Cells were then incubated in etoposide + inhibitors for 6 hours. Immunofluorescence was performed for γH2Ax, and cells were imaged using the Agilent Gen5 Cytation. CPTH2 = Gcn5 inhibitor, Nu9056 = Tip60 inhibitor, WM1119 = KAT6A inhibitor, A485 = p300 inhibitor. Quantification of γH2Ax positive cells (>2 foci per nucleus). Statistics: one-way ANOVA with Tukey’s post hoc test. Error bars indicate mean +/-SEM. *=p<0.05, **=p<0.01, ****=p<0.0001. D) Pathway analysis of AKI versus WT with differentially expressed genes (FDR 0.2) was performed with the TRRUST database. Top pathways shown with NES (normalized enrichment score). E) Representative images of p53 and ac-p53 (K379) immunofluorescence in AML12 cells overexpressing ATGL or Null control. Quantification of p53 and ac-p53 nuclear intensity (left) and nuclear intensity/cytoplasmic intensity (right). F) RT-qPCR of p53 target genes in WT and AKI Primary MEFs treated with etoposide for 3 hours, followed by 6 hours of recovery. G) AML12 cells were transduced with ATGL or a Null virus control. Cells were treated with A485 for 12 hours, followed by 60 minutes of etoposide treatment, followed by immunostaining for p53. *=p<0.05, **p<0.01. H) Primary MEFs were transfected with a pooled p53 siRNA and treated with etoposide for 3 hours, followed by a 1-hour recovery, and assayed for p53 and γH2Ax.

    Article Snippet: For p53/ac-p53 imaging, primary antibodies (p53, Cell Signaling 2524, 1:300; Acetyl-p53, PA5-17287, 1:250) were diluted in PBS-T containing 5% goat serum and incubated with the sample for 2 hours at room temperature.

    Techniques: Western Blot, Isolation, Incubation, Immunofluorescence, Control, Quantitative RT-PCR, Transduction, Virus, Immunostaining, Transfection

    A , B HUH7 and C , D Hep3B cells were transfected with an empty vector (Vehicle) or ATGL-overexpressing construct (ATGL-OE) for 24 h and then treated with 50 µM etoposide or 2 µM doxorubicin for 6 h. Western blot analysis of γH2AX levels was performed. E Western blot analysis of Ac-p53 Lys-382, p-p53 Ser-15 and p53 levels was performed in HepG2 cells after treatment with 50 µM etoposide for 2, 4, 6 and 24 h. F Densitometric ratios of Ac-p53 and p-p53 after treatment with 50 µM etoposide for 2, 4, 6 and 24 h. G – I HepG2 cells were transfected with empty vector (Vehicle) or ATGL-overexpressing (ATGL-OE) construct and, after 24 h, treated with 50 µM etoposide for 6 h with or without 10 µM C646 for 24 h. Western blot analysis of Ac-p53 Lys-382, p-p53 Ser-15 and p53 levels was performed. H Densitometric analysis ratios of Ac-p53 and p-p53 after treatment with 50 µM etoposide for 6 h. J – L HepG2 cells were treated with 50 µM etoposide for 6 h with or without 1 µM GW7647 for 24 h. Western blot analysis of Ac-p53 Lys-382, p-p53 Ser-15, p53 and γH2AX levels was performed. K Densitometric analysis of ratio between Ac-p53 and p-p53 expression after treatment with 50 µM etoposide for 6 h. The images are representative of three independent experiments that yielded similar results. β-Actin and ATGL were used as loading and transfection controls, respectively. The data are presented as the means ± SDs from three independent experiments. Statistical significance was determined by Student t test and one-way ANOVA with Tukey’s post hoc test; * p < 0.05, ** p < 0.01, *** p < 0.001 vs CTRL or as indicated by brackets.

    Journal: Cell Death Discovery

    Article Title: ATGL sensitizes hepatocellular carcinoma cells to genotoxic drugs by modulating p53 acetylation/phosphorylation status

    doi: 10.1038/s41420-026-03048-4

    Figure Lengend Snippet: A , B HUH7 and C , D Hep3B cells were transfected with an empty vector (Vehicle) or ATGL-overexpressing construct (ATGL-OE) for 24 h and then treated with 50 µM etoposide or 2 µM doxorubicin for 6 h. Western blot analysis of γH2AX levels was performed. E Western blot analysis of Ac-p53 Lys-382, p-p53 Ser-15 and p53 levels was performed in HepG2 cells after treatment with 50 µM etoposide for 2, 4, 6 and 24 h. F Densitometric ratios of Ac-p53 and p-p53 after treatment with 50 µM etoposide for 2, 4, 6 and 24 h. G – I HepG2 cells were transfected with empty vector (Vehicle) or ATGL-overexpressing (ATGL-OE) construct and, after 24 h, treated with 50 µM etoposide for 6 h with or without 10 µM C646 for 24 h. Western blot analysis of Ac-p53 Lys-382, p-p53 Ser-15 and p53 levels was performed. H Densitometric analysis ratios of Ac-p53 and p-p53 after treatment with 50 µM etoposide for 6 h. J – L HepG2 cells were treated with 50 µM etoposide for 6 h with or without 1 µM GW7647 for 24 h. Western blot analysis of Ac-p53 Lys-382, p-p53 Ser-15, p53 and γH2AX levels was performed. K Densitometric analysis of ratio between Ac-p53 and p-p53 expression after treatment with 50 µM etoposide for 6 h. The images are representative of three independent experiments that yielded similar results. β-Actin and ATGL were used as loading and transfection controls, respectively. The data are presented as the means ± SDs from three independent experiments. Statistical significance was determined by Student t test and one-way ANOVA with Tukey’s post hoc test; * p < 0.05, ** p < 0.01, *** p < 0.001 vs CTRL or as indicated by brackets.

    Article Snippet: The following primary antibodies were used: β-Actin (Cell Signaling Technology, cat. number #4970S, diluted 1:1000), γH2AX Ser-139 (Cell Signaling Technology, cat. number #9718, diluted 1:1000), ATGL (Cell Signaling Technology, cat. number 2138S, diluted 1:1000), pATM Ser-1981 (Cell Signaling Technology, cat. number #5883, diluted 1:1000), ATM (Cell Signaling Technology, cat. number #2873, diluted 1:1000), p21 (Cell Signaling Technology, cat. number #2947, diluted 1:1000), PPARα (Santa Cruz Biotechnology, cat. number sc-398394, diluted 1:1000), Puma (Cell Signaling Technology, cat. number #4976, diluted 1:1000), Ac-p53 Lys-382 (Cell Signaling Technology, cat. number #2525S, diluted 1:1000), p-p53 Ser-15 (Cell Signaling Technology, cat. number #9284S, diluted 1:1000), and p53 (Sigma-Aldrich, cat. number #P5813, diluted 1:1000).

    Techniques: Transfection, Plasmid Preparation, Construct, Western Blot, Expressing

    A – D HepG2 cells were transfected with empty vector (Vehicle) or ATGL-overexpressing construct (ATGL-OE) and, after 24 h, treated with 50 µM etoposide for 6 h with or without recovery (Rec) with fresh medium for 2 h. Western blot analysis of Ac-p53 Lys-382, p-p53 Ser-15, p53 and γH2AX levels was performed. E , F HepG2 cells were transfected with empty vector (Vehicle) or ATGL-overexpressing construct (ATGL-OE) and, after 24 h, treated with 50 µM etoposide or 2 µM doxorubicin for 6 h. The proliferation was assayed via the Trypan blue direct counting procedure. G , H HepG2 cells were treated with 50 µM etoposide for 6 h with or without 25 µM ATGListatin (ATGLi) for 24 h. HepG2 cells were treated with 50 µM etoposide for 6 h. I – K Western blot analysis of p21 and Puma levels was performed. HepG2 cells were treated with 1 µM GW7647 for 24 h. L , M Proliferation was assayed by the Trypan blue direct counting procedure. N – P Western blot analysis of p21 and Puma levels was performed. The images are representative of three independent experiments that yielded similar results. β-Actin and ATGL were used as loading and transfection controls, respectively. The data are presented as the means ± SDs from three independent experiments. Statistical significance was determined by one-way ANOVA with Tukey’s post hoc test; * p < 0.05, ** p < 0.01, *** p < 0.001 vs CTRL or as indicated by brackets.

    Journal: Cell Death Discovery

    Article Title: ATGL sensitizes hepatocellular carcinoma cells to genotoxic drugs by modulating p53 acetylation/phosphorylation status

    doi: 10.1038/s41420-026-03048-4

    Figure Lengend Snippet: A – D HepG2 cells were transfected with empty vector (Vehicle) or ATGL-overexpressing construct (ATGL-OE) and, after 24 h, treated with 50 µM etoposide for 6 h with or without recovery (Rec) with fresh medium for 2 h. Western blot analysis of Ac-p53 Lys-382, p-p53 Ser-15, p53 and γH2AX levels was performed. E , F HepG2 cells were transfected with empty vector (Vehicle) or ATGL-overexpressing construct (ATGL-OE) and, after 24 h, treated with 50 µM etoposide or 2 µM doxorubicin for 6 h. The proliferation was assayed via the Trypan blue direct counting procedure. G , H HepG2 cells were treated with 50 µM etoposide for 6 h with or without 25 µM ATGListatin (ATGLi) for 24 h. HepG2 cells were treated with 50 µM etoposide for 6 h. I – K Western blot analysis of p21 and Puma levels was performed. HepG2 cells were treated with 1 µM GW7647 for 24 h. L , M Proliferation was assayed by the Trypan blue direct counting procedure. N – P Western blot analysis of p21 and Puma levels was performed. The images are representative of three independent experiments that yielded similar results. β-Actin and ATGL were used as loading and transfection controls, respectively. The data are presented as the means ± SDs from three independent experiments. Statistical significance was determined by one-way ANOVA with Tukey’s post hoc test; * p < 0.05, ** p < 0.01, *** p < 0.001 vs CTRL or as indicated by brackets.

    Article Snippet: The following primary antibodies were used: β-Actin (Cell Signaling Technology, cat. number #4970S, diluted 1:1000), γH2AX Ser-139 (Cell Signaling Technology, cat. number #9718, diluted 1:1000), ATGL (Cell Signaling Technology, cat. number 2138S, diluted 1:1000), pATM Ser-1981 (Cell Signaling Technology, cat. number #5883, diluted 1:1000), ATM (Cell Signaling Technology, cat. number #2873, diluted 1:1000), p21 (Cell Signaling Technology, cat. number #2947, diluted 1:1000), PPARα (Santa Cruz Biotechnology, cat. number sc-398394, diluted 1:1000), Puma (Cell Signaling Technology, cat. number #4976, diluted 1:1000), Ac-p53 Lys-382 (Cell Signaling Technology, cat. number #2525S, diluted 1:1000), p-p53 Ser-15 (Cell Signaling Technology, cat. number #9284S, diluted 1:1000), and p53 (Sigma-Aldrich, cat. number #P5813, diluted 1:1000).

    Techniques: Transfection, Plasmid Preparation, Construct, Western Blot

    A Boxplot showing significantly reduced PNPLA2 expression in primary HCC tissues (primary tumor; n = 371) compared with solid tumor-adjacent non-tumoral liver tissues (solid tissue normal; n = 50) samples based on TCGA data. B Boxplot of Z-score–normalized ATGL expression from TCGA-LIHC RNA-seq data based on TP53 mutation status (wild type n = 263 and mutant n = 111). C Visualization of the PPAR signaling pathway, reporting normalized enrichment score (NES) and adjusted p -value. D Bar plot showing the most significantly enriched transcription factors after a transcription factor enrichment analysis performed using TRRUST transcription factors 2019 database on differentially expressed genes (DEGs) in ATGL-high versus ATGL-low HCC samples. Adjusted p -value was reported. Scatter plot showing the correlation between E PNPLA2 and PPARα ( PPARA ); between F PNPLA2 and EP300 ; between G PPARA and EP300 ; between H PNPLA2 and Puma ( BBC3 ); between I PNPLA2 and p21 ( CDKN1A ) mRNA expression levels in HCC samples from the TCGA-LIHC cohort analyzed using GEPIA. Gene expression values are reported as log2-transformed TPM. Each dot represents an individual tumor sample.

    Journal: Cell Death Discovery

    Article Title: ATGL sensitizes hepatocellular carcinoma cells to genotoxic drugs by modulating p53 acetylation/phosphorylation status

    doi: 10.1038/s41420-026-03048-4

    Figure Lengend Snippet: A Boxplot showing significantly reduced PNPLA2 expression in primary HCC tissues (primary tumor; n = 371) compared with solid tumor-adjacent non-tumoral liver tissues (solid tissue normal; n = 50) samples based on TCGA data. B Boxplot of Z-score–normalized ATGL expression from TCGA-LIHC RNA-seq data based on TP53 mutation status (wild type n = 263 and mutant n = 111). C Visualization of the PPAR signaling pathway, reporting normalized enrichment score (NES) and adjusted p -value. D Bar plot showing the most significantly enriched transcription factors after a transcription factor enrichment analysis performed using TRRUST transcription factors 2019 database on differentially expressed genes (DEGs) in ATGL-high versus ATGL-low HCC samples. Adjusted p -value was reported. Scatter plot showing the correlation between E PNPLA2 and PPARα ( PPARA ); between F PNPLA2 and EP300 ; between G PPARA and EP300 ; between H PNPLA2 and Puma ( BBC3 ); between I PNPLA2 and p21 ( CDKN1A ) mRNA expression levels in HCC samples from the TCGA-LIHC cohort analyzed using GEPIA. Gene expression values are reported as log2-transformed TPM. Each dot represents an individual tumor sample.

    Article Snippet: The following primary antibodies were used: β-Actin (Cell Signaling Technology, cat. number #4970S, diluted 1:1000), γH2AX Ser-139 (Cell Signaling Technology, cat. number #9718, diluted 1:1000), ATGL (Cell Signaling Technology, cat. number 2138S, diluted 1:1000), pATM Ser-1981 (Cell Signaling Technology, cat. number #5883, diluted 1:1000), ATM (Cell Signaling Technology, cat. number #2873, diluted 1:1000), p21 (Cell Signaling Technology, cat. number #2947, diluted 1:1000), PPARα (Santa Cruz Biotechnology, cat. number sc-398394, diluted 1:1000), Puma (Cell Signaling Technology, cat. number #4976, diluted 1:1000), Ac-p53 Lys-382 (Cell Signaling Technology, cat. number #2525S, diluted 1:1000), p-p53 Ser-15 (Cell Signaling Technology, cat. number #9284S, diluted 1:1000), and p53 (Sigma-Aldrich, cat. number #P5813, diluted 1:1000).

    Techniques: Expressing, RNA Sequencing, Mutagenesis, Gene Expression, Transformation Assay