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Sequence-specific DNA-binding proteins including transcription factors (TFs) are key determinants of gene regulation and chromatin architecture. Formaldehyde cross-linking and sonication followed by Chromatin ImmunoPrecipitation (X-ChIP) and sequencing is widely used for genome-wide profiling of pro...
ORGANISM(S): Drosophila melanogaster 
Chromatin remodelers influence genetic processes by altering nucleosome occupancy, positioning, and composition. In vitro, yeast ISWI and CHD remodelers require > 20 bp of extranucleosomal DNA for remodeling, but linker DNA in S. cerevisiae averages < 20 bp. To resolve this paradox, we have mapped t...
ORGANISM(S): Saccharomyces cerevisiae 
Chromatin remodelers influence genetic processes by altering nucleosome occupancy, positioning, and composition. In vitro, yeast ISWI and CHD remodelers require > 20 bp of extranucleosomal DNA for remodeling, but linker DNA in S. cerevisiae averages < 20 bp. To resolve this paradox, we have mapped t...
ORGANISM(S): Saccharomyces cerevisiae 
To identify CTCF partners and co-localizing proteins from native chromatin in mESCs and MNs in endogenous conditions. The goal is to identify proteins within each sample with respect to wild-type control for each.
ORGANISM(S): Mus musculus (Mouse) 
2022-02-11 | PXD030452 | Pride
We describe an in vivo chromatin purification system for genome-wide epigenetic profiling in C. elegans. In this system, we coexpressed the E. coli biotin ligase enzyme (BirA), together with the C. elegans H3.3 gene fused to BioTag, a 23-amino acid peptide serving as a biotinylation substrate for Bi...
ORGANISM(S): Caenorhabditis elegans 
Here we describe tools to study the step-wise assembly of protein complexes on chromatin in a highly-controlled manner using reconstituted chromatin platforms and quantitative proteomic profiling. We profile the early steps in transcriptional activation and highlight the potential for understanding...
ORGANISM(S): Saccharomyces Cerevisiae (ncbitaxon:4932) 
2018-05-15 | MSV000082363 | MassIVE
Protein–DNA interactions are key to the functionality and stability of the genome. Identification and mapping of protein–DNA interaction interfaces and sites is crucial for understanding DNA-dependent processes. Here, we present a workflow that allows mass spectrometric (MS) identification of protei...
ORGANISM(S): Homo sapiens (Human) Xenopus laevis (African clawed frog) 
2020-10-20 | PXD020290 | Pride
Here, we report that ATRX co-localizes with the H3K9-methyl transferase SETDB1 (also known as ESET), the co-repressor TRIM28 (also known as KAP1), and the transcription factor ZNF274 at 3’ exons of Zinc Finger Genes (ZNFs) containing an atypical H3K9me3/H3K36me3 chromatin signature. Disruption of ...
ORGANISM(S): Homo sapiens 
I. Exp Design 1. Type of experiment: Comparison of native versus cultured RPE cells 2. Experimental factors: Native RPE versus ARPE-19 cells grown on different matrices 3. How many hybridizations in exp: 21 4. If a common reference used for all the hybs: no 5. Quality control steps: three independen...
ORGANISM(S): Homo sapiens 
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