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SRX18639917: GSM6808815: HEK293T, H3K9ac_EV; Homo sapiens; ChIP-Seq
1 BGISEQ (MGISEQ-2000RS) run: 129.4M spots, 12.9G bases, 7.6Gb downloads

External Id: GSM6808815_r1
Submitted by: Yunnan University
Study: Ribosomal frameshifting at normal codon repeats recodes functional chimeric proteins in human[ChIP-seq]
show Abstracthide Abstract
Ribosomal frameshifting refers to the process that ribosomes slip into +1 or -1 reading frame, thus produce chimeric trans-frame proteins. In viruses and bacteria, programmed ribosomal frameshifting can produce essential trans-frame proteins for viral replication or regulation of other biological processes. In humans, however, functional trans-frame protein derived from ribosomal frameshifting is scarcely documented. Combining multiple assays, we show that short codon repeats could act as cis-acting elements that stimulate ribosomal frameshifting in humans, abbreviated as CRFS hereafter. Using proteomic analyses, we identified many putative CRFS events from 32 normal human tissues supported by trans-frame peptides positioned at codon repeats. Finally, we show a CRFS-derived trans-frame protein (HDAC1-FS) functions by antagonizing the activities of HDAC1, thus affecting cell migration and apoptosis. These data suggest a novel type of translational recoding associated with codon repeats,which may expand the coding capacity of mRNA and diversify the regulation in human. Overall design: ChIP-seq for the histone modifications H3K9ac to understand FS
Sample: HEK293T, H3K9ac_EV
SAMN32154803 • SRS16085101 • All experiments • All runs
Organism: Homo sapiens
Library:
Name: GSM6808815
Instrument: MGISEQ-2000RS
Strategy: ChIP-Seq
Source: GENOMIC
Selection: ChIP
Layout: SINGLE
Construction protocol: Cells were fixed with 1% formaldehyde for 10 minutes. After quenching and cell lysis, chromatin was sonicated using a ME220 focused-ultrasonicator (Covaris). VAHTS Universal DNA Library Prep Kit for MGI (NDM607)
Runs: 1 run, 129.4M spots, 12.9G bases, 7.6Gb
Run# of Spots# of BasesSizePublished
SRR22677775129,412,57512.9G7.6Gb2023-05-01

ID:
25699534

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