Back to Search Start Over

CLK-dependent exon recognition and conjoined gene formation revealed with a novel small molecule inhibitor

Authors :
Damian Yap
Nao Morishita
Atsushi Nakanishi
Karey Shumansky
Shinsuke Araki
Shoichi Nakao
Satoshi Sasaki
Esther Kong
Ryujiro Hara
Momoko Ohori
Hiroyoshi Toyoshiba
Adrian Wan
Masatoshi Karashima
Mari Ogasawara-Shimizu
Osamu Nakanishi
Hirokazu Tozaki
Christopher S. Hughes
Noriko Uchiyama
S.-W. Grace Cheng
Masaya Sano
Daisuke Morishita
Tomohiro Kawamoto
Tohru Miyazaki
Shinya Tasaki
Jamie Rosner
Tyler Funnell
Sohrab P. Shah
Arusha Oloumi
Toshiyuki Nomura
Samuel Aparicio
Steven McKinney
Yusuke Nakayama
Tomohiro Ohashi
Aiko Murai
Gregg B. Morin
Misa Iwatani
Source :
Nature Communications, Nature Communications, Vol 8, Iss 1, Pp 1-16 (2017)
Publication Year :
2017
Publisher :
Springer Science and Business Media LLC, 2017.

Abstract

CDC-like kinase phosphorylation of serine/arginine-rich proteins is central to RNA splicing reactions. Yet, the genomic network of CDC-like kinase-dependent RNA processing events remains poorly defined. Here, we explore the connectivity of genomic CDC-like kinase splicing functions by applying graduated, short-exposure, pharmacological CDC-like kinase inhibition using a novel small molecule (T3) with very high potency, selectivity, and cell-based stability. Using RNA-Seq, we define CDC-like kinase-responsive alternative splicing events, the large majority of which monotonically increase or decrease with increasing CDC-like kinase inhibition. We show that distinct RNA-binding motifs are associated with T3 response in skipped exons. Unexpectedly, we observe dose-dependent conjoined gene transcription, which is associated with motif enrichment in the last and second exons of upstream and downstream partners, respectively. siRNA knockdown of CLK2-associated genes significantly increases conjoined gene formation. Collectively, our results reveal an unexpected role for CDC-like kinase in conjoined gene formation, via regulation of 3′-end processing and associated splicing factors.<br />The phosphorylation of serine/arginine-rich proteins by CDC-like kinase is a central regulatory mechanism for RNA splicing reactions. Here, the authors synthesize a novel small molecule CLK inhibitor and map CLK-responsive alternative splicing events and discover an effect on conjoined gene transcription.

Details

ISSN :
20411723
Volume :
8
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi.dedup.....7743b0b42973b00a9e04e84cdd5eb466
Full Text :
https://doi.org/10.1038/s41467-016-0008-7