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The Scc2NIPBL/Scc4MAU2 complex acts in sister chromatid cohesion and transcriptional regulation by maintaining nucleosome-free regions.
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The Scc2NIPBL/Scc4MAU2 complex acts in sister chromatid cohesion and transcriptional regulation by maintaining nucleosome-free regions [ChIP-seq]
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The Scc2NIPBL/Scc4MAU2 complex acts in sister chromatid cohesion and transcriptional regulation by maintaining nucleosome-free regions [Mnase-seq]
The Scc2NIPBL/Scc4MAU2 complex acts in sister chromatid cohesion and transcriptional regulation by maintaining nucleosome-free regions [microarray]
A Role for Chromatin Remodeling in Cohesin Loading onto Chromosomes
RNA-Seq and ChIP-seq analysis of SCC2 in Saccharomyces cerevisiae
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ChIP Seq Analysis of SCC2 in the Presence or Absence of MED14 in Saccharomyces cerevisiae
RNA Seq analysis of SCC2 mutations R787G and G1242V at 9 hours following SCC2 depletion in Saccharomyces cerevisiae
RNA Seq analysis of SCC2 mutations R787G and G1242V at 3 hours following SCC2 depletion in Saccharomyces cerevisiae
Functional crosstalk between the cohesin loader and a chromatin remodeler
Budding yeast cohesin (Mcd1) distribution in mitotically arrested cells
Structural evidence for Scc4-dependent localization of cohesin loading
Isw1 contributes to cohesin association with centromeres and pericentromeric regions
Evidence for cohesin sliding along budding yeast chromosomes
Scc2 Is a Potent Activator of Cohesin's ATPase that Promotes Loading by Binding Scc1 without Pds5
Distribution of different proteins related to sister chromatid cohesion during the cell cycle.
Cell cycle dependent nucleosome occupancy at cohesin binding sites in yeast chromosomes
MCM2-7-dependent cohesin loading during S phase promotes sister-chromatid cohesion
Inactivation of the Budding Yeast Cohesin Loader Scc2 alters Gene Expression both Globally and in Response to a Single DNA Double Strand Break
Inactivation of the Budding Yeast Cohesin Loader Scc2 alters Gene Expression both Globally and in Response to a Single DNA Double Strand Break [ChIP-seq]
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