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Series GSE269857 Query DataSets for GSE269857
Status Public on Jun 17, 2024
Title Repurposed nuclear speckle and mitosis components induce CTCF clustering to sustain the senescence splicing program [eCLIP]
Organism Homo sapiens
Experiment type Other
Summary Senescence —the end-point of the replicative life span of normal cells— is characterized by a complex sequence of molecular and biochemical events. One of these is the dramatic reorganization of CTCF into large senescence-induced CTCF clusters (SICCs). However, the molecular determinants, genomic consequences, and functional purpose of SICCs remained unknown. Here, we combine super-resolution imaging, 3D genomics, and functional assays with computational modelling to address all aspects of SICC emergence. First, we used modelling and data from the overexpression of nuclear factors lost upon senescence entry to explain how changes in the nuclear environment allow for CTCF clustering. Second, we discovered that cells entering senescence repurpose SRRM2 —a key component of nuclear speckles— and BANF1 —a protein known to act as ‘molecular glue’ for chromosomes during mitosis— to cluster CTCF on the surface of speckles, while rewiring higher-order genome architecture. Last, we could show that SICCs are required for the faithful execution of the senescence splicing program as their disruption by SRRM2 or BANF1 depletion reverts splicing choices. Together, the senescence-specific clustering of CTCF on nuclear speckles is a new paradigm of a change in the biochemical environment of the nucleus being translated into its architectural reorganization to allow for the deployment of a splicing program driving homeostatic deregulation.
 
Overall design To detect the transcripts directly bound by CTCF, we conducted enhanced cross-linking with immunoprecipitation (eCLIP) experiments on the wild type and the ICM-induced senescent IMR90 cell lines.
 
Contributor(s) Papantonis A, Palikyras S, Zhu Y
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Submission date Jun 14, 2024
Last update date Jun 18, 2024
Contact name Argyris Papantonis
E-mail(s) argyris.papantonis@med.uni-goettingen.de
Organization name University Medical Center Göttingen
Department Institute of Pathology
Street address Robert-Koch-Str. 40
City Göttingen
ZIP/Postal code 37075
Country Germany
 
Platforms (1)
GPL21290 Illumina HiSeq 3000 (Homo sapiens)
Samples (8)
GSM8328997 IMR90, wild type, replicate 1, eclip
GSM8328998 IMR90, wild type, replicate 2, eclip
GSM8328999 IMR90, ICM, replicate 1, eclip
Relations
BioProject PRJNA1124025

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Supplementary file Size Download File type/resource
GSE269857_RAW.tar 155.8 Mb (http)(custom) TAR (of BW, NARROWPEAK)
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Raw data are available in SRA

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