Proteomics,Multiomics

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Chromatin capture links the metabolic enzyme AHCY to stem cell proliferation


ABSTRACT: Profiling the chromatin-bound proteome (chromatome) in a simple, direct, and reliable manner might be key to uncovering the role of yet uncharacterized chromatin factors in physiology and disease. Here, we have design an experimental strategy to survey the chromatome of proliferating cells by using the DNA-mediated chromatin pull-down technology (Dm-ChP). Our approach provides a global view of cellular chromatome in normal physiological conditions and enables the identification of chromatin-bound proteins de novo. Integrating Dm-ChP with genomic and functional data, we have discovered an unexpected chromatin function for adenosylhomocysteinase (AHCY), a major one-carbon pathway metabolic enzyme, in gene activation. Our study reveals a new regulatory axis between the metabolic state of pluripotent cells, ribosomal protein production, and cell division during early phase of embryo development, in which the metabolic flux of methylation reactions is favored in a local milieu

OTHER RELATED OMICS DATASETS IN: GSE116799

INSTRUMENT(S): Orbitrap Fusion Lumos, LTQ Orbitrap Velos

ORGANISM(S): Mus Musculus (mouse)

TISSUE(S): Embryonic Stem Cell

SUBMITTER: Eva Borràs  

LAB HEAD: Eduard Sabidó

PROVIDER: PXD011670 | Pride | 2019-03-13

REPOSITORIES: Pride

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Chromatin capture links the metabolic enzyme AHCY to stem cell proliferation.

Aranda Sergi S   Alcaine-Colet Anna A   Blanco Enrique E   Borràs Eva E   Caillot Claire C   Sabidó Eduard E   Di Croce Luciano L  

Science advances 20190306 3


Profiling the chromatin-bound proteome (chromatome) in a simple, direct, and reliable manner might be key to uncovering the role of yet uncharacterized chromatin factors in physiology and disease. Here, we have designed an experimental strategy to survey the chromatome of proliferating cells by using the DNA-mediated chromatin pull-down (Dm-ChP) technology. Our approach provides a global view of cellular chromatome under normal physiological conditions and enables the identification of chromatin  ...[more]

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