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cdk8 sirna h  (Santa Cruz Biotechnology)


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    Structured Review

    Santa Cruz Biotechnology cdk8 sirna h
    Cdk8 Sirna H, supplied by Santa Cruz Biotechnology, used in various techniques. Bioz Stars score: 88/100, based on 5 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/cdk8/Cdk8+siRNA/pm41596544-129-7-30
    Average 88 stars, based on 5 article reviews
    cdk8 sirna h - by Bioz Stars, 2026-10
    88/100 stars

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    Related Articles

    Control:

    Article Title: CDK8 Inhibition Increases E2F1 Transcriptional Activity and Promotes STAT3-Dependent Suppression of Mcl-1 in Triple-Negative Breast Cancer Cell Line MDA-MB-468.
    Article Snippet: .. Control siRNA-B (sc-44230), E2F-1 siRNA (h) (sc-29297), Cdk8 siRNA (h) (sc-29267), siRNA Transfection Medium (sc-36868) and siRNA Transfection Reagent (sc-29528), and mouse anti-Mcl-1 (22, sc-12756) (dil. 1:400) were purchased from Santa Cruz Biotechnology, Inc. (Santa Cruz, CA, USA). .. Rabbit anti-E2F-1 (#3742S (dil. 1:1000)), anti-Cdk8 (G398, #4101S) (dil. 1:1000), anti-STAT3 (#30835S) (dil. 1:1000), anti-pSTAT3(S727) (#9134S) (dil. 1:1000), anti-p73 (#14620) (dil. 1:1000), and anti-GAPDH (4C10, #5174S) (dil. 1:5000) antibodies were purchased from Cell Signaling Technology (Danvers, MA, USA).

    Article Title: CDK8 Inhibition Increases E2F1 Transcriptional Activity and Promotes STAT3-Dependent Suppression of Mcl-1 in Triple-Negative Breast Cancer Cell Line MDA-MB-468
    Article Snippet: .. Control siRNA-B (sc-44230), E2F-1 siRNA (h) (sc-29297), Cdk8 siRNA (h) (sc-29267), siRNA Transfection Medium (sc-36868) and siRNA Transfection Reagent (sc-29528), and mouse anti-Mcl-1 (22, sc-12756) (dil. 1:400) were purchased from Santa Cruz Biotechnology, Inc. (Santa Cruz, CA, USA). .. Rabbit anti-E2F-1 (#3742S (dil. 1:1000)), anti-Cdk8 (G398, #4101S) (dil. 1:1000), anti-STAT3 (#30835S) (dil. 1:1000), anti-pSTAT3(S727) (#9134S) (dil. 1:1000), anti-p73 (#14620) (dil. 1:1000), and anti-GAPDH (4C10, #5174S) (dil. 1:5000) antibodies were purchased from Cell Signaling Technology (Danvers, MA, USA).

    Article Title: Pan-Cancer Analysis of the Mediator Complex Transcriptome Identifies CDK19 and CDK8 as Therapeutic Targets in Advanced Prostate Cancer.
    Article Snippet: 1) Section for Prostate Cancer Research, 2) Institute of Pathology 3) Center for Integrated Oncology Cologne/Bonn, University Hospital of Bonn, Bonn, Germany 4) Department of Hematology, Oncology and Rheumatology, University Hospital of Bonn, Bonn, Germany 5) Pathology of the University Medical Center Schleswig-Holstein, Campus Lübeck and the Research Center Borstel, Leibniz Center for Medicine and Biosciences, Lübeck and Borstel, Germany 6) Clinic for Urology and Pediatric Urology, University Hospital of Bonn, Bonn, Germany 7) Department of Urology, University Hospital Schleswig-Holstein, Lübeck, Germany 8) Department of Urology, Faculty of Medicine and Health, Örebro University, Örebro, Sweden 9) Molecular Uro-oncology, Department of Urology, University of Heidelberg, Heidelberg, Germany 10) Department of Research and Education, Faculty of Medicine and Health, Örebro University, Örebro, Sweden * These authors contributed equally

    Transfection:

    Article Title: CDK8 Inhibition Increases E2F1 Transcriptional Activity and Promotes STAT3-Dependent Suppression of Mcl-1 in Triple-Negative Breast Cancer Cell Line MDA-MB-468.
    Article Snippet: .. Control siRNA-B (sc-44230), E2F-1 siRNA (h) (sc-29297), Cdk8 siRNA (h) (sc-29267), siRNA Transfection Medium (sc-36868) and siRNA Transfection Reagent (sc-29528), and mouse anti-Mcl-1 (22, sc-12756) (dil. 1:400) were purchased from Santa Cruz Biotechnology, Inc. (Santa Cruz, CA, USA). .. Rabbit anti-E2F-1 (#3742S (dil. 1:1000)), anti-Cdk8 (G398, #4101S) (dil. 1:1000), anti-STAT3 (#30835S) (dil. 1:1000), anti-pSTAT3(S727) (#9134S) (dil. 1:1000), anti-p73 (#14620) (dil. 1:1000), and anti-GAPDH (4C10, #5174S) (dil. 1:5000) antibodies were purchased from Cell Signaling Technology (Danvers, MA, USA).

    Article Title: Ellagic acid regulates Wnt/β-catenin signaling pathway and CDK8 in HCT 116 and HT 29 colon cancer cells
    Article Snippet: Band intensity was measured using ImageJ software (National Institute of Health, USA). .. CDK8 siRNA transfection The cancer cells were seeded in 6-well plate at 1.5 × 105 per well, cultured for 24 hours and then transfected with 20 pm siRNA (Santa Cruz Biotechnology, St. Louis Park, MN, USA) with 10 μL lipofectamine 2000 (Invitrogen), and incubated for 24 hours at 37°C with ellagic acid. ..

    Article Title: CDK8 Inhibition Increases E2F1 Transcriptional Activity and Promotes STAT3-Dependent Suppression of Mcl-1 in Triple-Negative Breast Cancer Cell Line MDA-MB-468
    Article Snippet: .. Control siRNA-B (sc-44230), E2F-1 siRNA (h) (sc-29297), Cdk8 siRNA (h) (sc-29267), siRNA Transfection Medium (sc-36868) and siRNA Transfection Reagent (sc-29528), and mouse anti-Mcl-1 (22, sc-12756) (dil. 1:400) were purchased from Santa Cruz Biotechnology, Inc. (Santa Cruz, CA, USA). .. Rabbit anti-E2F-1 (#3742S (dil. 1:1000)), anti-Cdk8 (G398, #4101S) (dil. 1:1000), anti-STAT3 (#30835S) (dil. 1:1000), anti-pSTAT3(S727) (#9134S) (dil. 1:1000), anti-p73 (#14620) (dil. 1:1000), and anti-GAPDH (4C10, #5174S) (dil. 1:5000) antibodies were purchased from Cell Signaling Technology (Danvers, MA, USA).

    Article Title: Pan-Cancer Analysis of the Mediator Complex Transcriptome Identifies CDK19 and CDK8 as Therapeutic Targets in Advanced Prostate Cancer.
    Article Snippet: 1) Section for Prostate Cancer Research, 2) Institute of Pathology 3) Center for Integrated Oncology Cologne/Bonn, University Hospital of Bonn, Bonn, Germany 4) Department of Hematology, Oncology and Rheumatology, University Hospital of Bonn, Bonn, Germany 5) Pathology of the University Medical Center Schleswig-Holstein, Campus Lübeck and the Research Center Borstel, Leibniz Center for Medicine and Biosciences, Lübeck and Borstel, Germany 6) Clinic for Urology and Pediatric Urology, University Hospital of Bonn, Bonn, Germany 7) Department of Urology, University Hospital Schleswig-Holstein, Lübeck, Germany 8) Department of Urology, Faculty of Medicine and Health, Örebro University, Örebro, Sweden 9) Molecular Uro-oncology, Department of Urology, University of Heidelberg, Heidelberg, Germany 10) Department of Research and Education, Faculty of Medicine and Health, Örebro University, Örebro, Sweden * These authors contributed equally

    Article Title: MicroRNA-770 affects proliferation and cell cycle transition by directly targeting CDK8 in glioma
    Article Snippet: .. CDK8 siRNA (CDK8: sc-29267, Santa Cruz) and negative control siRNA (NC-siRNA: sc-37007, Santa Cruz) were transfected using Lipofectamine 2000 and diluted to a concentration of 50 nM for use in future experiments in U251 cells. .. Human glioma U251 cells (5000 cells/well in 200 μL of DMEM medium) were seeded into three 96-well plates (5-parallel wells/group) and cultured for 24 h. Then, the cells were treated with control, miR-770, anti-miR-Control, anti-miR-770, NC-siRNA (50 nM), CDK8 siRNA (50 nM), vector control and the CDK8 overexpression vector for 24, 48 and 72 h, respectively.

    Cell Culture:

    Article Title: Ellagic acid regulates Wnt/β-catenin signaling pathway and CDK8 in HCT 116 and HT 29 colon cancer cells
    Article Snippet: Band intensity was measured using ImageJ software (National Institute of Health, USA). .. CDK8 siRNA transfection The cancer cells were seeded in 6-well plate at 1.5 × 105 per well, cultured for 24 hours and then transfected with 20 pm siRNA (Santa Cruz Biotechnology, St. Louis Park, MN, USA) with 10 μL lipofectamine 2000 (Invitrogen), and incubated for 24 hours at 37°C with ellagic acid. ..

    Incubation:

    Article Title: Ellagic acid regulates Wnt/β-catenin signaling pathway and CDK8 in HCT 116 and HT 29 colon cancer cells
    Article Snippet: Band intensity was measured using ImageJ software (National Institute of Health, USA). .. CDK8 siRNA transfection The cancer cells were seeded in 6-well plate at 1.5 × 105 per well, cultured for 24 hours and then transfected with 20 pm siRNA (Santa Cruz Biotechnology, St. Louis Park, MN, USA) with 10 μL lipofectamine 2000 (Invitrogen), and incubated for 24 hours at 37°C with ellagic acid. ..

    Electroporation:

    Article Title: Identification and functional signature of genes regulated by structurally different ABL kinase inhibitors.
    Article Snippet: Quantitative analysis of CDK2 and CDK8 expression was carried out by analysing hyper-enhanced chemiluminescence (ECL) films of immunoblotting by using a densitometer (Bio-Rad, Hercules, CA, USA). .. siRNA oligonucleotides for CDK2 and CDK8 were purchased from Santa Cruz Biotechnology Inc. (Santa Cruz, CA, USA), and resuspended in RNase-free H2O at 20mM. siRNA (1.25 mM) was added to prechilled 0.4 cm-gap electroporation cuvettes (Bio-Rad). ..

    Negative Control:

    Article Title: MicroRNA-770 affects proliferation and cell cycle transition by directly targeting CDK8 in glioma
    Article Snippet: .. CDK8 siRNA (CDK8: sc-29267, Santa Cruz) and negative control siRNA (NC-siRNA: sc-37007, Santa Cruz) were transfected using Lipofectamine 2000 and diluted to a concentration of 50 nM for use in future experiments in U251 cells. .. Human glioma U251 cells (5000 cells/well in 200 μL of DMEM medium) were seeded into three 96-well plates (5-parallel wells/group) and cultured for 24 h. Then, the cells were treated with control, miR-770, anti-miR-Control, anti-miR-770, NC-siRNA (50 nM), CDK8 siRNA (50 nM), vector control and the CDK8 overexpression vector for 24, 48 and 72 h, respectively.

    Concentration Assay:

    Article Title: MicroRNA-770 affects proliferation and cell cycle transition by directly targeting CDK8 in glioma
    Article Snippet: .. CDK8 siRNA (CDK8: sc-29267, Santa Cruz) and negative control siRNA (NC-siRNA: sc-37007, Santa Cruz) were transfected using Lipofectamine 2000 and diluted to a concentration of 50 nM for use in future experiments in U251 cells. .. Human glioma U251 cells (5000 cells/well in 200 μL of DMEM medium) were seeded into three 96-well plates (5-parallel wells/group) and cultured for 24 h. Then, the cells were treated with control, miR-770, anti-miR-Control, anti-miR-770, NC-siRNA (50 nM), CDK8 siRNA (50 nM), vector control and the CDK8 overexpression vector for 24, 48 and 72 h, respectively.



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    Image Search Results


    Runx2 activation boosted CDK8 transcription in BEAS-2B cells. A The downstream target genes of Runx2 were predicted through CHEA, hTFTarget, and KnockTF2.0. B The effects of acute CSE incubation on the top 3 target genes were evaluated in BEAS-2B cells by RT-PCR. C SiRunx2 plasmids were established and transfected to repress Runx2 expression in BEAS-2B cells. Then, the influences of siRunx2 on CSE-induced the changes of the top 3 target genes were estimated using RT-PCR. D , E CDK8 nuclear protein was measured in mouse lungs after CS exposure using western blotting ( D ) and densitometry analysis ( E ). F , G The effect of acute CSE on CDK8 nuclear protein was determined in BEAS-2B cells using western blotting ( F ) and densitometry analysis ( G ). H - K The effects of siRunx2 plasmids transfection on CSE-activated CDK8 and inflammatory cytokines were explored in BEAS-2B cells. H , I The proteins expression of Runx2 and CDK8 were detected using western blotting ( H ) and densitometry analyses ( I ). J The levels of inflammatory cytokines were measured using RT-PCR. K The effects of CDK8 inhibition on CSE-upregulated inflammatory cytokines were evaluated by RT-PCR. L , M Potential binding sequences for Runx2 were predicted in the CDK8 promoter ( L ), Runx2 andluciferase reporter plasmids were transfected and luciferase activity was detected ( M ). All the data were expressed as the means± S.E.M. ( N =6).* P < 0.05, ** P < 0.01

    Journal: Respiratory Research

    Article Title: Runx2 acetylation enhances pulmonary inflammation in chronic obstructive pulmonary disease through activating CDK8

    doi: 10.1186/s12931-025-03475-4

    Figure Lengend Snippet: Runx2 activation boosted CDK8 transcription in BEAS-2B cells. A The downstream target genes of Runx2 were predicted through CHEA, hTFTarget, and KnockTF2.0. B The effects of acute CSE incubation on the top 3 target genes were evaluated in BEAS-2B cells by RT-PCR. C SiRunx2 plasmids were established and transfected to repress Runx2 expression in BEAS-2B cells. Then, the influences of siRunx2 on CSE-induced the changes of the top 3 target genes were estimated using RT-PCR. D , E CDK8 nuclear protein was measured in mouse lungs after CS exposure using western blotting ( D ) and densitometry analysis ( E ). F , G The effect of acute CSE on CDK8 nuclear protein was determined in BEAS-2B cells using western blotting ( F ) and densitometry analysis ( G ). H - K The effects of siRunx2 plasmids transfection on CSE-activated CDK8 and inflammatory cytokines were explored in BEAS-2B cells. H , I The proteins expression of Runx2 and CDK8 were detected using western blotting ( H ) and densitometry analyses ( I ). J The levels of inflammatory cytokines were measured using RT-PCR. K The effects of CDK8 inhibition on CSE-upregulated inflammatory cytokines were evaluated by RT-PCR. L , M Potential binding sequences for Runx2 were predicted in the CDK8 promoter ( L ), Runx2 andluciferase reporter plasmids were transfected and luciferase activity was detected ( M ). All the data were expressed as the means± S.E.M. ( N =6).* P < 0.05, ** P < 0.01

    Article Snippet: Information on the primary antibodies used in this experiment were as follows: β-actin (Proteintech, 81115-1-RR, 1:10000), Lamin A/C (Bioword, BS6019, 1:5000), Sirt1 (CST, #8469, 1:1000), Sirt2 (CST, D4O5O, 1:1000), Sirt3 (Affinity, AF5135, 1:1000), Sirt4 (CST, #69786, 1:2000), Sirt5 (Abcam, Ab259967 , 1:2000), Sirt6 (CST, D8D12, 1:3000), Sirt7 (Abcam, Ab259968 , 1:2000), Runx2 (D1L7F) (CST, #12556, 1:1000), Runx2 (SANTA CRUZ, sc-101145, 1:200), CDK8 (CST, 4101 S, 1:1000), Acetylated-Lysine (CST, #9441, 1:1000), Ubiqutin (Abcam, Ab140601 , 1:1000).

    Techniques: Activation Assay, Incubation, Reverse Transcription Polymerase Chain Reaction, Transfection, Expressing, Western Blot, Inhibition, Binding Assay, Luciferase, Activity Assay

    CS exposure induced Runx2 acetylation through repressing Sirt3. A - L The effects of acute CSE on acetylation and Sirts family were analyzed in BEAS-2B cells, as well as the levels of acetylation in animal models exposed to CS and in patients with COPD. The overall acetylation levels were observed in BEAS-2B cells exposed to acute CSE ( A , B ), COPD-like animal models exposed to CS ( C , D ), and patients with COPD ( E , F ) using western blotting. ( G , H ) The effects of acute CSE exposure on Sirts family were evaluated by western blotting ( G ) and densitometry analyses ( H ). I , J Sirt3 nuclear protein was determined in CSE-exposed BEAS-2B cells using western blotting ( I ) and densitometry analysis ( J ). K , L The effect of CS exposure on Sirt3 nuclear translocation was analyzed through IHC in lung tissues of COPD mice ( K ) and quantitative analysis ( L ). M , N The colocalization between Sirt3 and Runx2 was detected in mouse lungs using IF ( M ) and Mander colocalization coefficient was analyzed ( N ). O , P The impact of CSE exposure on Runx2 acetylation was determined by western blotting ( O ) and densitometry analysis ( P ). Q Molecular docking of Runx2 with Sirt3 was determined via the HDOCK method. R , S The impact of Sirt3 decrease on CSE-elevated Runx2 protein stability was analyzed by western blotting ( R ) and densitometry analysis ( S ). T , U The effect of Sirt3 decline on CSE-upregulated Runx2/CDK8 was estimated via western blotting ( T ) and densitometry analyses ( U ). V - Y The effect of Sirt3 downregulation on CSE-mediated Runx2 acetylation was explored with Co-IP. V IP: Runx2; Western blotting: Sirt3. W Densitometry analyses. X IP: Sirt3; Western blotting: Runx2. Y Densitometry analyses. All the data were expressed as the means± S.E.M. ( N =6).* P < 0.05, ** P < 0.01

    Journal: Respiratory Research

    Article Title: Runx2 acetylation enhances pulmonary inflammation in chronic obstructive pulmonary disease through activating CDK8

    doi: 10.1186/s12931-025-03475-4

    Figure Lengend Snippet: CS exposure induced Runx2 acetylation through repressing Sirt3. A - L The effects of acute CSE on acetylation and Sirts family were analyzed in BEAS-2B cells, as well as the levels of acetylation in animal models exposed to CS and in patients with COPD. The overall acetylation levels were observed in BEAS-2B cells exposed to acute CSE ( A , B ), COPD-like animal models exposed to CS ( C , D ), and patients with COPD ( E , F ) using western blotting. ( G , H ) The effects of acute CSE exposure on Sirts family were evaluated by western blotting ( G ) and densitometry analyses ( H ). I , J Sirt3 nuclear protein was determined in CSE-exposed BEAS-2B cells using western blotting ( I ) and densitometry analysis ( J ). K , L The effect of CS exposure on Sirt3 nuclear translocation was analyzed through IHC in lung tissues of COPD mice ( K ) and quantitative analysis ( L ). M , N The colocalization between Sirt3 and Runx2 was detected in mouse lungs using IF ( M ) and Mander colocalization coefficient was analyzed ( N ). O , P The impact of CSE exposure on Runx2 acetylation was determined by western blotting ( O ) and densitometry analysis ( P ). Q Molecular docking of Runx2 with Sirt3 was determined via the HDOCK method. R , S The impact of Sirt3 decrease on CSE-elevated Runx2 protein stability was analyzed by western blotting ( R ) and densitometry analysis ( S ). T , U The effect of Sirt3 decline on CSE-upregulated Runx2/CDK8 was estimated via western blotting ( T ) and densitometry analyses ( U ). V - Y The effect of Sirt3 downregulation on CSE-mediated Runx2 acetylation was explored with Co-IP. V IP: Runx2; Western blotting: Sirt3. W Densitometry analyses. X IP: Sirt3; Western blotting: Runx2. Y Densitometry analyses. All the data were expressed as the means± S.E.M. ( N =6).* P < 0.05, ** P < 0.01

    Article Snippet: Information on the primary antibodies used in this experiment were as follows: β-actin (Proteintech, 81115-1-RR, 1:10000), Lamin A/C (Bioword, BS6019, 1:5000), Sirt1 (CST, #8469, 1:1000), Sirt2 (CST, D4O5O, 1:1000), Sirt3 (Affinity, AF5135, 1:1000), Sirt4 (CST, #69786, 1:2000), Sirt5 (Abcam, Ab259967 , 1:2000), Sirt6 (CST, D8D12, 1:3000), Sirt7 (Abcam, Ab259968 , 1:2000), Runx2 (D1L7F) (CST, #12556, 1:1000), Runx2 (SANTA CRUZ, sc-101145, 1:200), CDK8 (CST, 4101 S, 1:1000), Acetylated-Lysine (CST, #9441, 1:1000), Ubiqutin (Abcam, Ab140601 , 1:1000).

    Techniques: Western Blot, Translocation Assay, Co-Immunoprecipitation Assay

    NR supplementation alleviated CS-activated Runx2/CDK8 axis in mouse lungs. A - R The impact of NR supplementation on CS-activated Runx2/CDK8 axis activation was explored in mouse lungs. A The content of NAD+ was detected in BEAS-2B cells after CSE treatment. B The effect of NR supplementation on CSE-downregulated NAD+ was evaluated in BEAS-2B cells. C , D The effect of NR supplementation on CSE-activated Runx2/CDK8 axis was estimated in BEAS-2B cells by western blotting ( C ) and densitometry analyses ( D ). E The concentration of NAD + was analyzed in mouse lungs after CS exposure. F The influence of NR pretreatment on CSE-evoked downregulation of NAD + was evaluated in mouse lungs. G , H The effect of NR supplementation on CS-activated Runx2/CDK8 axis was explored in mouse lungs via western blotting ( G ) and densitometry analyses ( H ). I , J Runx2-positive nuclei was determined in mouse lungs by IHC ( G ) and quantitative analysis ( H ). K , L ) Sirt3-positive nuclei was assessed in mouse lungs through IHC ( I ) and quantitative analysis ( J ). M - P The effects of NR supplementation on CS-promoted the production of inflammatory cytokines were estimated in mouse lungs via RT-PCR, including Cxcl1 ( M ), Cxcl2 ( N ), Il-6 ( O ), Cxcl15 ( P ). All the data were expressed as the means± S.E.M. ( N =6).* P < 0.05, ** P < 0.01

    Journal: Respiratory Research

    Article Title: Runx2 acetylation enhances pulmonary inflammation in chronic obstructive pulmonary disease through activating CDK8

    doi: 10.1186/s12931-025-03475-4

    Figure Lengend Snippet: NR supplementation alleviated CS-activated Runx2/CDK8 axis in mouse lungs. A - R The impact of NR supplementation on CS-activated Runx2/CDK8 axis activation was explored in mouse lungs. A The content of NAD+ was detected in BEAS-2B cells after CSE treatment. B The effect of NR supplementation on CSE-downregulated NAD+ was evaluated in BEAS-2B cells. C , D The effect of NR supplementation on CSE-activated Runx2/CDK8 axis was estimated in BEAS-2B cells by western blotting ( C ) and densitometry analyses ( D ). E The concentration of NAD + was analyzed in mouse lungs after CS exposure. F The influence of NR pretreatment on CSE-evoked downregulation of NAD + was evaluated in mouse lungs. G , H The effect of NR supplementation on CS-activated Runx2/CDK8 axis was explored in mouse lungs via western blotting ( G ) and densitometry analyses ( H ). I , J Runx2-positive nuclei was determined in mouse lungs by IHC ( G ) and quantitative analysis ( H ). K , L ) Sirt3-positive nuclei was assessed in mouse lungs through IHC ( I ) and quantitative analysis ( J ). M - P The effects of NR supplementation on CS-promoted the production of inflammatory cytokines were estimated in mouse lungs via RT-PCR, including Cxcl1 ( M ), Cxcl2 ( N ), Il-6 ( O ), Cxcl15 ( P ). All the data were expressed as the means± S.E.M. ( N =6).* P < 0.05, ** P < 0.01

    Article Snippet: Information on the primary antibodies used in this experiment were as follows: β-actin (Proteintech, 81115-1-RR, 1:10000), Lamin A/C (Bioword, BS6019, 1:5000), Sirt1 (CST, #8469, 1:1000), Sirt2 (CST, D4O5O, 1:1000), Sirt3 (Affinity, AF5135, 1:1000), Sirt4 (CST, #69786, 1:2000), Sirt5 (Abcam, Ab259967 , 1:2000), Sirt6 (CST, D8D12, 1:3000), Sirt7 (Abcam, Ab259968 , 1:2000), Runx2 (D1L7F) (CST, #12556, 1:1000), Runx2 (SANTA CRUZ, sc-101145, 1:200), CDK8 (CST, 4101 S, 1:1000), Acetylated-Lysine (CST, #9441, 1:1000), Ubiqutin (Abcam, Ab140601 , 1:1000).

    Techniques: Activation Assay, Western Blot, Concentration Assay, Reverse Transcription Polymerase Chain Reaction