Proteomics

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Dual DNA/protein tagging of open chromatin unveils dynamics of epigenomic landscapes in leukemia


ABSTRACT: The architecture of chromatin specifies eukaryotic cell identity by controlling transcription factor access to sites of gene regulation. Here we describe a dual transposase/peroxidase approach, integrative DNA And Protein Tagging (iDAPT), which detects both DNA (iDAPT-seq) and protein (iDAPT-MS) associated with accessible regions of chromatin. In addition to direct identification of bound transcription factors, iDAPT enables the inference of their gene regulatory networks, protein interactors, and regulation of chromatin accessibility. We applied iDAPT to profile the epigenomic consequences of granulocytic differentiation of acute promyelocytic leukemia, yielding previously undescribed mechanistic insights with potential therapeutic implications. Our findings demonstrate the power of iDAPT as a discovery platform for both the dynamic epigenomic landscapes and their transcription factor components associated with biological phenomena and disease.

INSTRUMENT(S): LTQ Orbitrap

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Blood Cell, Cell Suspension Culture

DISEASE(S): Acute Leukemia

SUBMITTER: Jonathan Lee  

LAB HEAD: Jonathan Lee

PROVIDER: PXD022252 | Pride | 2020-11-02

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
410478_m22940_JLee.mzIdentML Mzid
410479_m22941_JLee.mzIdentML Mzid
410480_m22942_JLee.mzIdentML Mzid
410481_m22943_JLee.mzIdentML Mzid
410482_m22934_JLee.mzIdentML Mzid
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