4.6 Article

Nuclear Speckle-related Protein 70 Binds to Serine/Arginine-rich Splicing Factors 1 and 2 via an Arginine/Serine-like Region and Counteracts Their Alternative Splicing Activity

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 291, 期 12, 页码 6169-6181

出版社

ELSEVIER
DOI: 10.1074/jbc.M115.689414

关键词

alternative splicing; CD44; dimerization; heterogeneous nuclear ribonucleoprotein (hnRNP); RNA binding protein; NSrp70; RS-like region; SR protein; coiled-coil domain; nuclear speckle

资金

  1. Basic Science Program through National Research Foundation (NRF) - Ministry of Science, ICT, and Future Planning [2015R1 A2A1A15052658]
  2. Creative Research Initiative Program through National Research Foundation (NRF) - Ministry of Science, ICT, and Future Planning [2015R1A3A2066253]
  3. Basic Science Program through NRF - Ministry of Education, Korea [2013R1A6A3A04064259]
  4. Bio Imaging Research Center at the Gwangju Institute of Science and Technology
  5. National Research Foundation of Korea [2013R1A6A3A04064259, 2015R1A3A2066253] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

Nuclear speckles are subnuclear storage sites containing pre-mRNA splicing machinery. Proteins assembled in nuclear speckles are known to modulate transcription and pre-mRNA processing. We have previously identified nuclear speckle-related protein 70 (NSrp70) as a novel serine/arginine (SR)-related protein that co-localizes with classical SR proteins such as serine/arginine-rich splicing factor 1 (SRSF1 or ASF/SF2) and SRSF2 (SC35). NSrp70 mediates alternative splice site selection, targeting several pre-mRNAs, including CD44 exon v5. Here we demonstrated that NSrp70 interacts physically with two SR proteins, SRSF1 and SRSF2, and reverses their splicing activity in terms of CD44 exon v5 as exon exclusion. The NSrp70 RS-like region was subdivided into three areas. Deletion of the first arginine/serine-rich-like region (RS1) completely abrogated binding to the SR proteins and to target mRNA and also failed to induce splicing of CD44 exon v5, suggesting that RS1 is critical for NSrp70 functioning. Interestingly, RS1 deletion also resulted in the loss of NSrp70 and SR protein speckle positioning, implying a potential scaffolding role for NSrp70 in nuclear speckles. NSrp70 contains an N-terminal coiled-coil domain that is critical not only for self-oligomerization but also for splicing activity. Consistently, deletion of the coiled-coil domain resulted in indefinite formation of nuclear speckles. Collectively, these results demonstrate that NSrp70 acts as a new molecular counterpart for alternative splicing of target RNA, counteracting SRSF1 and SRSF2 splicing activity.

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