Funnell Tyler, Tasaki Shinya, Oloumi Arusha, Araki Shinsuke, Kong Esther, Yap Damian, Nakayama Yusuke, Hughes Christopher S, Cheng S-W Grace, Tozaki Hirokazu, Iwatani Misa, Sasaki Satoshi, Ohashi Tomohiro, Miyazaki Tohru, Morishita Nao, Morishita Daisuke, Ogasawara-Shimizu Mari, Ohori Momoko, Nakao Shoichi, Karashima Masatoshi, Sano Masaya, Murai Aiko, Nomura Toshiyuki, Uchiyama Noriko, Kawamoto Tomohiro, Hara Ryujiro, Nakanishi Osamu, Shumansky Karey, Rosner Jamie, Wan Adrian, McKinney Steven, Morin Gregg B, Nakanishi Atsushi, Shah Sohrab, Toyoshiba Hiroyoshi, Aparicio Samuel
Department of Molecular Oncology, BC Cancer Agency, 675 West 10th Avenue, Vancouver, British Columbia, Canada, V5Z 1L3.
Department of Pathology and Laboratory Medicine, University of British Columbia, Vancouver, British Columbia, Canada, V6T 2B5.
Nat Commun. 2017 Feb 23;8(1):7. doi: 10.1038/s41467-016-0008-7.
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.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.
类CDC激酶对富含丝氨酸/精氨酸蛋白的磷酸化作用对RNA剪接反应至关重要。然而,类CDC激酶依赖性RNA加工事件的基因组网络仍未得到很好的界定。在此,我们通过使用一种具有非常高的效力、选择性和细胞稳定性的新型小分子(T3),应用逐步、短时间暴露的药理学类CDC激酶抑制方法,探索基因组类CDC激酶剪接功能的连通性。利用RNA测序,我们定义了类CDC激酶响应性可变剪接事件,其中绝大多数事件随着类CDC激酶抑制作用的增强而单调增加或减少。我们表明,不同的RNA结合基序与跳跃外显子中的T3反应相关。出乎意料的是,我们观察到剂量依赖性的联合基因转录,这分别与上游和下游伙伴的最后一个外显子和第二个外显子中的基序富集相关。CLK2相关基因的siRNA敲低显著增加联合基因的形成。总体而言,我们的结果揭示了类CDC激酶在联合基因形成中通过调节3'端加工和相关剪接因子发挥的意想不到的作用。类CDC激酶对富含丝氨酸/精氨酸蛋白的磷酸化是RNA剪接反应的一种核心调节机制。在此,作者合成了一种新型小分子CLK抑制剂,绘制了CLK响应性可变剪接事件图谱,并发现了对联合基因转录的影响。