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对Prp22介导的外显子连接和mRNA释放的新机制见解。

New mechanistic insights into Prp22-mediated exon ligation and mRNA release.

作者信息

Chung Che-Sheng, Tseng Chi-Kang, Chen Hsin-Chou, Cheng Soo-Chen

机构信息

Institute of Molecular Biology, Academia Sinica, Taipei, Taiwan 115, Republic of China.

Graduate Institute of Microbiology, National Taiwan University, College of Medicine, Taipei, Taiwan 100, Republic of China.

出版信息

Nucleic Acids Res. 2025 Aug 27;53(16). doi: 10.1093/nar/gkaf823.

Abstract

The DExD/H-box RNA helicase Prp22 catalyzes messenger RNA (mRNA) release from the spliceosome, and has also been implicated in proofreading the 3' splice site (3'SS), preventing exon ligation of mutant pre-mRNAs through an ATP-dependent mechanism. However, here we reveal an unexpected role for Prp22 in promoting exon ligation of both wild-type and mutant pre-mRNAs by stabilizing Slu7's association with the spliceosome prior to exon ligation. Notably, ATP binding, rather than hydrolysis, by Prp22 inhibits exon ligation of 3'SS mutant pre-mRNA. Following exon ligation, Prp22-mediated ATP hydrolysis facilitates the dissociation of both Slu7 and mRNA from the spliceosome. Remarkably, Prp22 and Cwc22, which bind the 3'- and 5'-exons respectively, remain associated with the released mRNA, whereas Slu7 and Fyv6 dissociate independently. We propose that Prp22 facilitates exon ligation by stabilizing Slu7 binding, with binding of ATP by Prp22 potentially destabilizing that interaction, thereby weakening contacts between the 5'-exon and the 3'SS to inhibit exon ligation. After exon ligation, Prp22-driven ATP hydrolysis induces a conformational change in Prp8 that disrupts its interdomain interactions, enabling mRNA release through the domain interfaces, with Prp22 and Cwc22 remaining associated with the released mRNA.

摘要

DExD/H盒RNA解旋酶Prp22催化信使核糖核酸(mRNA)从剪接体释放,并且还参与校对3'剪接位点(3'SS),通过一种ATP依赖性机制防止突变前体mRNA的外显子连接。然而,我们在此揭示了Prp22在促进野生型和突变前体mRNA的外显子连接中具有意想不到的作用,即通过在外显子连接之前稳定Slu7与剪接体的结合。值得注意的是,Prp22结合ATP而非水解ATP会抑制3'SS突变前体mRNA的外显子连接。外显子连接后,Prp22介导的ATP水解促进Slu7和mRNA从剪接体解离。值得注意的是,分别结合3'-和5'-外显子的Prp22和Cwc22仍与释放的mRNA结合,而Slu7和Fyv6则独立解离。我们提出,Prp22通过稳定Slu7的结合来促进外显子连接,Prp22结合ATP可能会破坏这种相互作用,从而削弱5'-外显子与3'SS之间的接触以抑制外显子连接。外显子连接后,Prp22驱动的ATP水解诱导Prp8发生构象变化,破坏其结构域间相互作用,使得mRNA能够通过结构域界面释放,而Prp22和Cwc22仍与释放的mRNA结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/276d/12393901/261b2c0fc1c4/gkaf823figgra1.jpg

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