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Using a secreted and robust Gaussia Luciferase (GLuc) as the reporter, GeneCopoeia GLuc-ON promoter clones are designed for promoter analysis by detecting the real-time activities of about 39,500 human, 28,700 mouse and 17,500 rat promoters
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Produced in rabbits immunized with E. coli-derived Human KANSL2 fragment, and purified by antigen affinity chromatography.
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Proteintech
kansl2 ![]() Kansl2, supplied by Proteintech, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/kansl2/KANSL2+Antibody/pmc12484798-368-48-49 Average 93 stars, based on 1 article reviews
kansl2 - by Bioz Stars,
2026-09
93/100 stars
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Lenti ORF clone of Kansl2 mGFP tagged ORF Rat similar to hypothetical protein FLJ20436 RGD1303127 10 ug
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Kansl2 GFP tagged Mouse RIKEN cDNA 2310037I24 gene 2310037I24Rik 10ug
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Kansl2 CRISPRa kit CRISPR gene activation of mouse KAT8 regulatory NSL complex subunit 2
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Kansl2 KN2 0 Mouse gene knockout kit via CRISPR non homology mediated
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GeneCopoeia offers genome-wide human, mouse and rat microRNA (miRNA) 3′ UTR target clones in mammalian expression vectors. miRNA 3′ UTR target clones can be used for miRNA target identification and functional validation of predicted targets,
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The KANSL2 Antibody [DyLight 550] from Novus is a KANSL2 antibody to KANSL2. This antibody reacts with Human. The KANSL2 antibody has been validated for the following applications: Immunocytochemistry/ Immunofluorescence.
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The KANSL2 Antibody [HRP] from Novus is a KANSL2 antibody to KANSL2. This antibody reacts with Human. The KANSL2 antibody has been validated for the following applications: Immunocytochemistry/ Immunofluorescence.
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The KANSL2 Antibody from Novus is a KANSL2 antibody to KANSL2. This antibody reacts with Human. The KANSL2 antibody has been validated for the following applications: Immunocytochemistry/ Immunofluorescence, Immunohistochemistry-Paraffin.
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The KANSL2 Antibody [Biotin] from Novus is a KANSL2 antibody to KANSL2. This antibody reacts with Human. The KANSL2 antibody has been validated for the following applications: Immunocytochemistry/ Immunofluorescence.
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Image Search Results
Journal: Nature Communications
Article Title: Regulation of NSL by TAF4A is critical for genome stability and quiescence of muscle stem cells
doi: 10.1038/s41467-025-64402-1
Figure Lengend Snippet: a Heat maps of centered TAF4A CUT&RUN peaks. The blue-to-red gradient indicates high-to-low counts in the corresponding region. b Genome-wide distribution of TAF4A peaks. c Bar plot representing TAF4A peaks at different types of promoters. d Detected SP1 and NF-YA binding site under TAF4A CUT&RUN peaks. e Taf4a and Nf-Ya expression in freshly isolated MuSCs (fiMuSCs) and muscle based on reads per exon kilobase per million (RPKM) values (unpaired two-tailed t test: * p = 0.0103, *** p = 0.0005 n = 3). f Co-IP of TAF4A and NF-YA/B in wildtype MuSCs. Blots were probed with antibodies against TAF4A and NF-YA or NF-YB ( n = 2). g Percentage of TAF4A CUT&RUN peaks overlapping either with NF-YA peaks or with SP1 binding motifs. h Venn diagram of overlapping TAF4A CUT&RUN (CnR) peaks, NF-YA CUT&RUN (CnR) peaks, and RNA-seq DEG in Taf4a sKO MuSCs. i TAF4A, NF-YA and H3K4me3 distribution in the proximal promoter region of the Kansl2 gene in WT MuSCs. 8-20-weeks-old males and females were used. Data are presented as mean ± SEM of biological replicates. Source data are provided in the Source Data file.
Article Snippet: In brief, 1 × 10 6 wild type in vitro cultured muscle stem cells (MuSCs) or 4 × 10 5 wild type and Taf4a sKO MuSCs were immobilized on Concanavalin A-coated magnetic beads (Bangs Laboratories), permeated with 0.05% Digitonin (EMD Millipore), and incubated with TAF4A (Santa Cruz #sc-136093),
Techniques: Genome Wide, Binding Assay, Expressing, Isolation, Two Tailed Test, Co-Immunoprecipitation Assay, RNA Sequencing
Journal: Nature Communications
Article Title: Regulation of NSL by TAF4A is critical for genome stability and quiescence of muscle stem cells
doi: 10.1038/s41467-025-64402-1
Figure Lengend Snippet: a Representation of NSL complex functions. b Heat map of expression levels of NSL complex components in Taf4a sKO MuSCs compared to control MuSCs ( n = 3). c , d RT-qPCR analysis of Kansl2 ( c ) and Mcrs1 ( d ) expression in freshly isolated control and Taf4a sKO MuSCs. m36b4 was used as reference gene (unpaired two-tailed t test, ( c ) * p = 0.0161, ( d ) * p = 0.0417, n = 5). e Western blot analysis of H4K16ac in cultured MuSCs from control and Taf4a sKO mice. H3 was used as loading control (unpaired two-tailed t test: * p = 0.0280, n = 3). f Heat maps of CUT&RUN signals of KANSL2 at transcriptional start sites. The blue-to-red gradient indicates high-to-low counts in the corresponding region. g Genome-wide distribution of KANSL2 peaks. h Venn diagram of overlapping KANSL2 CUT&RUN peaks, up and down-regulated genes from RNA-seq data in Taf4a sKO MuSCs. i Heat map showing KANSL2 binding at promoters of downregulated epigenetic modifiers genes in Taf4a sKO MuSCs ( n = 3). j GO term analysis of genes with an overlap between KANSL2 CUT&RUN peaks and downregulated genes in Taf4a sKO MuSCs based on P-values using EnrichR (Fisher’s exact test, two-sided). The number of genes associated with each GO term is indicated in square brackets. 8–20-week-old males and females were used. MuSCs were isolated 4–6 weeks after tamoxifen administration. Data are presented as mean ± SEM of biological replicates. Source data are provided in the Source Data file.
Article Snippet: In brief, 1 × 10 6 wild type in vitro cultured muscle stem cells (MuSCs) or 4 × 10 5 wild type and Taf4a sKO MuSCs were immobilized on Concanavalin A-coated magnetic beads (Bangs Laboratories), permeated with 0.05% Digitonin (EMD Millipore), and incubated with TAF4A (Santa Cruz #sc-136093),
Techniques: Expressing, Control, Quantitative RT-PCR, Isolation, Two Tailed Test, Western Blot, Cell Culture, Genome Wide, RNA Sequencing, Binding Assay
Journal: Nature Communications
Article Title: Regulation of NSL by TAF4A is critical for genome stability and quiescence of muscle stem cells
doi: 10.1038/s41467-025-64402-1
Figure Lengend Snippet: a DAPI staining of Taf4a sKO MuSCs. Quantification of relative micronuclei numbers. Scale bar: 5 µm (**** p < 0.0001, n = 6). b gH2A.X immunofluorescence in cultured control and Taf4a sKO MuSCs. Scale bar: 20 µm. Quantification of relative numbers of γH2A.X+ cells (*** p = 0.0008, n = 4). c Western blot of γH2A.X in control and Taf4a sKO MuSCs. Loading control: H3 ( n = 3). d Western blot of immunoprecipitated Lamin A/C in control and Taf4a sKO MuSCs. Acetylation signals were normalized to total Lamin A/C levels. Quantification of acetylation levels (*** p = 0.0006, n = 3). e Western blot of p-lamin A/C ser392 in cultured control and Taf4a sKO MuSCs. Loading control: GAPDH ( n = 2). f Stiffness measurements of control and Taf4a sKO MuSC nuclei by AFM. Data represent average medians of Young’s Modulus (Pa) normalized to control MuSCs (** p = 0.0017, n = 5). g RT-qPCR analysis of Kansl2 expression in scrambled control and Nf-ya knockdown MuSCs. Reference gene: m36b4 (*** p = 0.0004, *** p = 0.0007, n = 6). h LaminB staining and quantification of micronuclei-positive cells in untreated ( n = 6), scrambled control ( n = 3), Taf4a knockdown ( n = 3), Kansl2 knockdown ( n = 3), Nfya knockdown ( n = 3), and Mcrs1 knockdown ( n = 3) in cultured MuSCs (* p = 0.0214, *** p = 0.0001, **** p < 0.0001). Scale bar: 5 µm. i LaminB staining and quantification of micronuclei-positive cells in control, Kansl2 overexpressing control, Taf4a sKO and Kansl2 overexpressing Taf4a sKO MuSCs (** p = 0.0054 *** p = 0.0004 **** p < 0.0001, n = 4). Scale bar: 5 µm. j Stiffness measurements of control, Taf4a sKO and Kansl2 overexpressing Taf4a sKO MuSC nuclei by AFM. Data representation as in ( f ) (** p = 0.0026, * p = 0.0437 n = 4). k RT-qPCR analysis of Kansl2 expression in scrambled control, Nf-ya knockdown and Nf-ya knockdown in Kansl2 overexpressing MuSCs. Reference gene: m36b4 (** p = 0.0026, **** p < 0.0001, n = 3). l Quantification of micronuclei-containing cells in scrambled control, Nf-ya knockdown, and Nf-ya knockdown Kansl2 overexpressing MuSCs (**** p < 0.0001, n = 4) from 8-20 weeks old males and females, isolated 4–6 weeks after tamoxifen administration. Data are mean ± SEM of biological replicates. ( a , b , d , f , k ) unpaired two-tailed t test. ( g , h , l ) one-way ANOVA with Bonferroni’s multiple comparisons test. ( i ) one-way ANOVA with Tukey’s multiple comparisons test. ( j ) one-way ANOVA with Holm–Sidak’s multiple comparisons test. Source data are provided in the Source Data file.
Article Snippet: In brief, 1 × 10 6 wild type in vitro cultured muscle stem cells (MuSCs) or 4 × 10 5 wild type and Taf4a sKO MuSCs were immobilized on Concanavalin A-coated magnetic beads (Bangs Laboratories), permeated with 0.05% Digitonin (EMD Millipore), and incubated with TAF4A (Santa Cruz #sc-136093),
Techniques: Staining, Immunofluorescence, Cell Culture, Control, Western Blot, Immunoprecipitation, Quantitative RT-PCR, Expressing, Knockdown, Isolation, Two Tailed Test
Journal: Nature Communications
Article Title: Regulation of NSL by TAF4A is critical for genome stability and quiescence of muscle stem cells
doi: 10.1038/s41467-025-64402-1
Figure Lengend Snippet: TAF4A drives expression of Kansl2 by interacting with the NF-Y complex. KANSL2 is a critical part of the NSL (non-specific lethal) complex, which also comprises the acetyl-transferase MOF. Decreased expression of Kansl2 prevents NSL-mediated acetylation of Lamin, increasing Lamin phosphorylation and solubility. Created in BioRender. Guo, X. (2025) https://BioRender.com/frmva1q .
Article Snippet: In brief, 1 × 10 6 wild type in vitro cultured muscle stem cells (MuSCs) or 4 × 10 5 wild type and Taf4a sKO MuSCs were immobilized on Concanavalin A-coated magnetic beads (Bangs Laboratories), permeated with 0.05% Digitonin (EMD Millipore), and incubated with TAF4A (Santa Cruz #sc-136093),
Techniques: Expressing, Phospho-proteomics, Solubility