首页 正文

Nature structural & molecular biology. 2025 Mar 6. doi: 10.1038/s41594-025-01501-z Q112.52024

Condensation of ZFP207 and U1 snRNP promotes spliceosome assembly

ZFP207和U1 snRNP的凝结促进剪接体的组装 翻译改进

Yuenan Zhou  1  2, Chong Tong  1  2, Zuokun Shi  1  2, Yan Zhang  1  2, Xushen Xiong  3, Xiaohua Shen  4, Xiaoyu Li  5, Yafei Yin  6

作者单位 +展开

作者单位

  • 1 Department of Cardiology of the Second Affiliated Hospital and Department of Cell Biology, Zhejiang University School of Medicine, Hangzhou, China.
  • 2 Department of Biochemistry and Department of Gastroenterology of the Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China.
  • 3 The Second Affiliated Hospital and Liangzhu Laboratory, Zhejiang University School of Medicine, Hangzhou, China.
  • 4 School of Medicine and Center for Life Sciences, Tsinghua University, Beijing, China.
  • 5 Department of Biochemistry and Department of Gastroenterology of the Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China. xiaoyu_li@zju.edu.cn.
  • 6 Department of Cardiology of the Second Affiliated Hospital and Department of Cell Biology, Zhejiang University School of Medicine, Hangzhou, China. yafei_yin@zju.edu.cn.
  • DOI: 10.1038/s41594-025-01501-z PMID: 40050462

    摘要 Ai翻译

    The U1 small nuclear ribonucleoprotein (snRNP) has an essential role in initiating spliceosome assembly, yet the mechanism underlying its synergy with other splicing regulators for efficient spliceosome assembly remains elusive. Here we identify zinc finger protein 207 (ZFP207) as a key regulator of U1 snRNP function that substantially promotes spliceosome assembly. Acute depletion of ZFP207 results in a series of molecular phenotypes indicative of U1 snRNP dysregulation. Mechanistically, the N-terminal zinc finger domains of ZFP207 directly bind to stem-loop 3 of U1 snRNA, while its C-terminal intrinsically disordered regions undergo phase separation to form biomolecular condensates with U1 snRNP. These condensates create a crowded molecular environment that increases the local concentration of splicing snRNPs and regulators, thereby accelerating the speed of spliceosome assembly by facilitating interactions between U1 snRNP and other snRNPs. Collectively, our study demonstrates the critical role of phase separation in ensuring effective U1 snRNP function and promoting efficient spliceosome assembly.

    Keywords:spliceosome assembly; condensation; U1 snRNP

    Copyright © Nature structural & molecular biology. 中文内容为AI机器翻译,仅供参考!

    相关内容

    期刊名:Nature structural & molecular biology

    缩写:NAT STRUCT MOL BIOL

    ISSN:1545-9993

    e-ISSN:1545-9985

    IF/分区:12.5/Q1

    文章目录 更多期刊信息

    全文链接
    引文链接
    复制
    已复制!
    推荐内容
    Condensation of ZFP207 and U1 snRNP promotes spliceosome assembly