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BORIS/CTCFL epigenetically reprograms clustered CTCF binding sites into alternative transcriptional start sites

Authors :
Elena M. Pugacheva
Dharmendra Nath Bhatt
Samuel Rivero-Hinojosa
Md Tajmul
Liron Fedida
Emma Price
Yon Ji
Dmitri Loukinov
Alexander V. Strunnikov
Bing Ren
Victor V. Lobanenkov
Source :
Genome Biology, Vol 25, Iss 1, Pp 1-40 (2024)
Publication Year :
2024
Publisher :
BMC, 2024.

Abstract

Abstract Background Pervasive usage of alternative promoters leads to the deregulation of gene expression in carcinogenesis and may drive the emergence of new genes in spermatogenesis. However, little is known regarding the mechanisms underpinning the activation of alternative promoters. Results Here we describe how alternative cancer-testis-specific transcription is activated. We show that intergenic and intronic CTCF binding sites, which are transcriptionally inert in normal somatic cells, could be epigenetically reprogrammed into active de novo promoters in germ and cancer cells. BORIS/CTCFL, the testis-specific paralog of the ubiquitously expressed CTCF, triggers the epigenetic reprogramming of CTCF sites into units of active transcription. BORIS binding initiates the recruitment of the chromatin remodeling factor, SRCAP, followed by the replacement of H2A histone with H2A.Z, resulting in a more relaxed chromatin state in the nucleosomes flanking the CTCF binding sites. The relaxation of chromatin around CTCF binding sites facilitates the recruitment of multiple additional transcription factors, thereby activating transcription from a given binding site. We demonstrate that the epigenetically reprogrammed CTCF binding sites can drive the expression of cancer-testis genes, long noncoding RNAs, retro-pseudogenes, and dormant transposable elements. Conclusions Thus, BORIS functions as a transcription factor that epigenetically reprograms clustered CTCF binding sites into transcriptional start sites, promoting transcription from alternative promoters in both germ cells and cancer cells.

Details

Language :
English
ISSN :
1474760X
Volume :
25
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Genome Biology
Publication Type :
Academic Journal
Accession number :
edsdoj.7545d2268ffe4ce8b98c890ee6a96563
Document Type :
article
Full Text :
https://doi.org/10.1186/s13059-024-03175-0