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SRX21436095: GSM7720846: K562, TET2 WT, H2AK119ub, CUT&Tag, rep1; Homo sapiens; OTHER
1 ILLUMINA (Illumina NovaSeq 6000) run: 20.6M spots, 4.5G bases, 1.3Gb downloads

External Id: GSM7720846_r1
Submitted by: Department of Chemistry, University of Chicago
Study: TET2 regulates histone H2AK119ub and leukemogenesis through LTR RNA m5C oxidation [seq_DNA-CUTandTag]
show Abstracthide Abstract
Mutation of TET2 drives myeloid malignancy progression. TET2 deficiency is known to cause a globally opened chromatin and activation of genes contributing to aberrant HSPC self-renewal. We show here that chromatin-associated retrotransposon RNA 5-methylcytosine (m5C), installed by NSUN2, can be recognized by the methyl-CpG-binding domain protein MBD6, which guides deubiquitylation of nearby histone H2AK119ub to promote an open chromatin state. TET2 oxidizes m5C and antagonizes this MBD6-dependent H2AK119ub deubiquitylation. Thereby, TET2 depletion leads to globally decreased H2AK119ub, more open chromatin, and increased transcription in stem cells. TET2 mutant human leukemia became dependent on this gene activation pathway, with MBD6 silencing selectively inhibits proliferation of TET2 mutant leukemia in vitro and in vivo. Altogether, our findings reveal a previously unknown chromatin regulation pathway by TET2 through retrotransposon RNA m5C oxidation and identify the downstream MBD6 protein as a feasible target for developing therapies specific against TET2 mutant malignancies. Overall design: CUT&Tag-seq in mESC, mouse LK and K562 cells
Sample: K562, TET2 WT, H2AK119ub, CUT&Tag, rep1
SAMN37094982 • SRS18673241 • All experiments • All runs
Organism: Homo sapiens
Library:
Name: GSM7720846
Instrument: Illumina NovaSeq 6000
Strategy: OTHER
Source: GENOMIC
Selection: other
Layout: PAIRED
Construction protocol: N/A CUT&Tag libraries were constructed following the manufacturer's instructions of CUT&Tag-IT™ Assay Kit (Active Motif, 53160).
Runs: 1 run, 20.6M spots, 4.5G bases, 1.3Gb
Run# of Spots# of BasesSizePublished
SRR2571167120,643,0994.5G1.3Gb2024-07-24

ID:
28875947

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