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plasmid dna  (ATCC)


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    ATCC plasmid dna
    Plasmid Dna, supplied by ATCC, used in various techniques. Bioz Stars score: 96/100, based on 301 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/plasmid dna/product/ATCC
    Average 96 stars, based on 301 article reviews
    plasmid dna - by Bioz Stars, 2026-03
    96/100 stars

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    Cell death induction by 1H13-survivin/BIRC5-derived peptides targeted to the cytoplasm, mitochondria, or nucleus (A) The sequences added to the 1H13-BIRC5 peptide to target it to the: (1) cytoplasm, (2) mitochondria, or (3) nucleus. The underlined sequence represents the 1H13 peptide; in red, amino acids indicate D-amino acid substitutions. (B) A549 cells were incubated for 90 min with 5 μM FITC-labeled, nucleus-targeted peptide IH13-Nuc, and were also IF-stained with anti--SMAC, anti-IP3R or anti-GM130 antibodies, and stained with DAPI to visualize the mitochondria, ER, Golgi, and nucleus, respectively. Confocal microscope images are shown, with white arrows indicating peptide co-localization with the mitochondria (SMAC). Orange and yellow arrows indicate peptide presence in the nucleus and cytosol, respectively. (C) A549 cells were incubated with the mitochondria- or nucleus-targeted 1H13-BIRC5-derived peptide for 24 h in serum-free medium, followed by a cell proliferation assay using the SRB method. (D and E) Apoptotic cell death as induced in A549 cells following incubation for 24 h with the nucleus-targeted peptide (2/3D-1H13-Nuc) in the presence or absence of the indicated concentrations of the peptides in serum-free medium and subjected to FITC–annexin V/PI staining, followed by a flow cytometry analysis. Representative histograms for control and selected peptide concentration (D) and analysis of early and late apoptotic stages are shown (E). (F and G) Cell death as induced by 2/3D-1H13-Nuc in different cell lines, A549, SH-SY5Y, U-87MG, PC-3, and HUV-EC-C (F) or Jurkat, K562, and KMH2-LC (G) were treated with the indicated concentrations of the peptide for 24 h, then subjected to cell death analysis using propidium iodide (PI) staining and flow cytometry. (H and I) A549 cells were seeded at a density of 2 × 10 5 cells per well in a 12-well plate. After 24 h, the cells were transfected with 2 μg of <t>a</t> <t>pCMV3-survivin</t> expression plasmid <t>(HG10356-UT,</t> Sino Biological, China) or with an empty pCMV3 plasmid (control) using JetPrime transfection reagent (Polyplus, France), following the manufacturer’s instructions. Twenty-four hours post-transfection, the cells were re-seeded at 1 × 10 5 cells per well in a 12-well plate. After another 24 h, the culture medium was replaced with serum-free medium, and the cells were treated with the indicated concentrations of the 2/3D-1H13-Nuc peptide. Survivin overexpression levels were assessed by immunoblotting (H), and cell death was analyzed by propidium iodide (PI) staining followed by FACS analysis (I). Results represent the means ± SEM ( n = 3).
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    Genecopoeia dio2 overexpression plasmids
    Identification, functional characterization, and trajectory analysis of stromal cell subclusters in adenomyosis (AM). ( A ) UMAP visualization of stromal subclusters (Str1–Str4). ( B ) Dot plots depicting the average expression of established markers indicated ecotype. ( C ) Pseudotime trajectory showing the progression of Str1, Str2, Str3 and Str4. ( D ) Gene Ontology (GO) terms significantly enriched across gene clusters with distinct pseudo-temporal patterns. ( E ) The distribution of <t>DIO2</t> , PGR , and WNT5A in stromal cell subclusters by UMAP. ( F ) Violin plot of inflammatory scores across stromal subclusters. ( G ) Box plots of the relative proportions of AM and control cells in each stromal subcluster. ( H ) Separate pseudotime trajectories of stromal subclusters in control and AM groups
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    Image Search Results


    Cell death induction by 1H13-survivin/BIRC5-derived peptides targeted to the cytoplasm, mitochondria, or nucleus (A) The sequences added to the 1H13-BIRC5 peptide to target it to the: (1) cytoplasm, (2) mitochondria, or (3) nucleus. The underlined sequence represents the 1H13 peptide; in red, amino acids indicate D-amino acid substitutions. (B) A549 cells were incubated for 90 min with 5 μM FITC-labeled, nucleus-targeted peptide IH13-Nuc, and were also IF-stained with anti--SMAC, anti-IP3R or anti-GM130 antibodies, and stained with DAPI to visualize the mitochondria, ER, Golgi, and nucleus, respectively. Confocal microscope images are shown, with white arrows indicating peptide co-localization with the mitochondria (SMAC). Orange and yellow arrows indicate peptide presence in the nucleus and cytosol, respectively. (C) A549 cells were incubated with the mitochondria- or nucleus-targeted 1H13-BIRC5-derived peptide for 24 h in serum-free medium, followed by a cell proliferation assay using the SRB method. (D and E) Apoptotic cell death as induced in A549 cells following incubation for 24 h with the nucleus-targeted peptide (2/3D-1H13-Nuc) in the presence or absence of the indicated concentrations of the peptides in serum-free medium and subjected to FITC–annexin V/PI staining, followed by a flow cytometry analysis. Representative histograms for control and selected peptide concentration (D) and analysis of early and late apoptotic stages are shown (E). (F and G) Cell death as induced by 2/3D-1H13-Nuc in different cell lines, A549, SH-SY5Y, U-87MG, PC-3, and HUV-EC-C (F) or Jurkat, K562, and KMH2-LC (G) were treated with the indicated concentrations of the peptide for 24 h, then subjected to cell death analysis using propidium iodide (PI) staining and flow cytometry. (H and I) A549 cells were seeded at a density of 2 × 10 5 cells per well in a 12-well plate. After 24 h, the cells were transfected with 2 μg of a pCMV3-survivin expression plasmid (HG10356-UT, Sino Biological, China) or with an empty pCMV3 plasmid (control) using JetPrime transfection reagent (Polyplus, France), following the manufacturer’s instructions. Twenty-four hours post-transfection, the cells were re-seeded at 1 × 10 5 cells per well in a 12-well plate. After another 24 h, the culture medium was replaced with serum-free medium, and the cells were treated with the indicated concentrations of the 2/3D-1H13-Nuc peptide. Survivin overexpression levels were assessed by immunoblotting (H), and cell death was analyzed by propidium iodide (PI) staining followed by FACS analysis (I). Results represent the means ± SEM ( n = 3).

    Journal: Molecular Therapy Oncology

    Article Title: Survivin/BIRC5-derived peptide disrupts survivin dimerization and cell division and induces multifaceted anti-cancer effects

    doi: 10.1016/j.omton.2025.201123

    Figure Lengend Snippet: Cell death induction by 1H13-survivin/BIRC5-derived peptides targeted to the cytoplasm, mitochondria, or nucleus (A) The sequences added to the 1H13-BIRC5 peptide to target it to the: (1) cytoplasm, (2) mitochondria, or (3) nucleus. The underlined sequence represents the 1H13 peptide; in red, amino acids indicate D-amino acid substitutions. (B) A549 cells were incubated for 90 min with 5 μM FITC-labeled, nucleus-targeted peptide IH13-Nuc, and were also IF-stained with anti--SMAC, anti-IP3R or anti-GM130 antibodies, and stained with DAPI to visualize the mitochondria, ER, Golgi, and nucleus, respectively. Confocal microscope images are shown, with white arrows indicating peptide co-localization with the mitochondria (SMAC). Orange and yellow arrows indicate peptide presence in the nucleus and cytosol, respectively. (C) A549 cells were incubated with the mitochondria- or nucleus-targeted 1H13-BIRC5-derived peptide for 24 h in serum-free medium, followed by a cell proliferation assay using the SRB method. (D and E) Apoptotic cell death as induced in A549 cells following incubation for 24 h with the nucleus-targeted peptide (2/3D-1H13-Nuc) in the presence or absence of the indicated concentrations of the peptides in serum-free medium and subjected to FITC–annexin V/PI staining, followed by a flow cytometry analysis. Representative histograms for control and selected peptide concentration (D) and analysis of early and late apoptotic stages are shown (E). (F and G) Cell death as induced by 2/3D-1H13-Nuc in different cell lines, A549, SH-SY5Y, U-87MG, PC-3, and HUV-EC-C (F) or Jurkat, K562, and KMH2-LC (G) were treated with the indicated concentrations of the peptide for 24 h, then subjected to cell death analysis using propidium iodide (PI) staining and flow cytometry. (H and I) A549 cells were seeded at a density of 2 × 10 5 cells per well in a 12-well plate. After 24 h, the cells were transfected with 2 μg of a pCMV3-survivin expression plasmid (HG10356-UT, Sino Biological, China) or with an empty pCMV3 plasmid (control) using JetPrime transfection reagent (Polyplus, France), following the manufacturer’s instructions. Twenty-four hours post-transfection, the cells were re-seeded at 1 × 10 5 cells per well in a 12-well plate. After another 24 h, the culture medium was replaced with serum-free medium, and the cells were treated with the indicated concentrations of the 2/3D-1H13-Nuc peptide. Survivin overexpression levels were assessed by immunoblotting (H), and cell death was analyzed by propidium iodide (PI) staining followed by FACS analysis (I). Results represent the means ± SEM ( n = 3).

    Article Snippet: After 24 h, the cells were transfected with 2 μg of a pCMV3-survivin expression plasmid (HG10356-UT, Sino Biological, China) or with an empty pCMV3 plasmid (control) using JetPrime transfection reagent (Polyplus, France), following the manufacturer’s instructions.

    Techniques: Derivative Assay, Sequencing, Incubation, Labeling, Staining, Microscopy, Proliferation Assay, Flow Cytometry, Control, Concentration Assay, Transfection, Expressing, Plasmid Preparation, Over Expression, Western Blot

    Identification, functional characterization, and trajectory analysis of stromal cell subclusters in adenomyosis (AM). ( A ) UMAP visualization of stromal subclusters (Str1–Str4). ( B ) Dot plots depicting the average expression of established markers indicated ecotype. ( C ) Pseudotime trajectory showing the progression of Str1, Str2, Str3 and Str4. ( D ) Gene Ontology (GO) terms significantly enriched across gene clusters with distinct pseudo-temporal patterns. ( E ) The distribution of DIO2 , PGR , and WNT5A in stromal cell subclusters by UMAP. ( F ) Violin plot of inflammatory scores across stromal subclusters. ( G ) Box plots of the relative proportions of AM and control cells in each stromal subcluster. ( H ) Separate pseudotime trajectories of stromal subclusters in control and AM groups

    Journal: Journal of Translational Medicine

    Article Title: Single-cell transcriptomic landscape of the mid-secretory eutopic endometrium reveals receptivity defects in adenomyosis

    doi: 10.1186/s12967-026-07866-z

    Figure Lengend Snippet: Identification, functional characterization, and trajectory analysis of stromal cell subclusters in adenomyosis (AM). ( A ) UMAP visualization of stromal subclusters (Str1–Str4). ( B ) Dot plots depicting the average expression of established markers indicated ecotype. ( C ) Pseudotime trajectory showing the progression of Str1, Str2, Str3 and Str4. ( D ) Gene Ontology (GO) terms significantly enriched across gene clusters with distinct pseudo-temporal patterns. ( E ) The distribution of DIO2 , PGR , and WNT5A in stromal cell subclusters by UMAP. ( F ) Violin plot of inflammatory scores across stromal subclusters. ( G ) Box plots of the relative proportions of AM and control cells in each stromal subcluster. ( H ) Separate pseudotime trajectories of stromal subclusters in control and AM groups

    Article Snippet: Control, LGR5, SOX9, and DIO2 overexpression plasmids (GeneCopoeia, China) were introduced using X-tremeGENE 9 (Roche, USA).

    Techniques: Functional Assay, Expressing, Control

    DIO2 ⁺ Str4 stromal cells exhibit SASP-like activity and drive decidualization. ( A , B ) Representative immunohistochemistry (IHC) images of DIO2, CXCL12, IGFBP3, and MMP14 in mid-secretory eutopic endometrial tissues from controls and adenomyosis (AM) patients ( n = 12). Scale bars, 50 μm. ( C ) ELISA quantification of decidualization markers IGFBP1 and PRL in control and AM tissues ( n = 12). ( D ) Senescence-associated β-galactosidase (SA-β-gal) staining in control HESCs undergoing in vitro decidualization. ( E ) RT-qPCR analysis of SASP-related cytokines CXCL14, TIMP3, and IL15 in decidualized control HESCs ( n = 3). ( F ) ELISA measurement of secreted SASP cytokines in culture supernatant ( n = 3). ( G – K ) Effects of DIO2 knockdown on β-gal activity ( G ), SASP cytokine mRNA expression ( H ), and secreted protein levels ( I – K ) in control HESCs ( n = 3). ( L , M ) F-actin filaments staining in control HESCs following DIO2 knockdown during in vitro decidualization, visualized with Alexa Fluor 555–conjugated phalloidin. Scale bar = 50 μm, n = 3. Data are presented as the mean ± SD, * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001

    Journal: Journal of Translational Medicine

    Article Title: Single-cell transcriptomic landscape of the mid-secretory eutopic endometrium reveals receptivity defects in adenomyosis

    doi: 10.1186/s12967-026-07866-z

    Figure Lengend Snippet: DIO2 ⁺ Str4 stromal cells exhibit SASP-like activity and drive decidualization. ( A , B ) Representative immunohistochemistry (IHC) images of DIO2, CXCL12, IGFBP3, and MMP14 in mid-secretory eutopic endometrial tissues from controls and adenomyosis (AM) patients ( n = 12). Scale bars, 50 μm. ( C ) ELISA quantification of decidualization markers IGFBP1 and PRL in control and AM tissues ( n = 12). ( D ) Senescence-associated β-galactosidase (SA-β-gal) staining in control HESCs undergoing in vitro decidualization. ( E ) RT-qPCR analysis of SASP-related cytokines CXCL14, TIMP3, and IL15 in decidualized control HESCs ( n = 3). ( F ) ELISA measurement of secreted SASP cytokines in culture supernatant ( n = 3). ( G – K ) Effects of DIO2 knockdown on β-gal activity ( G ), SASP cytokine mRNA expression ( H ), and secreted protein levels ( I – K ) in control HESCs ( n = 3). ( L , M ) F-actin filaments staining in control HESCs following DIO2 knockdown during in vitro decidualization, visualized with Alexa Fluor 555–conjugated phalloidin. Scale bar = 50 μm, n = 3. Data are presented as the mean ± SD, * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001

    Article Snippet: Control, LGR5, SOX9, and DIO2 overexpression plasmids (GeneCopoeia, China) were introduced using X-tremeGENE 9 (Roche, USA).

    Techniques: Activity Assay, Immunohistochemistry, Enzyme-linked Immunosorbent Assay, Control, Staining, In Vitro, Quantitative RT-PCR, Knockdown, Expressing