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影响减数分裂前体 mRNA 依赖 Nam8 剪接的因素。

Determinants of Nam8-dependent splicing of meiotic pre-mRNAs.

机构信息

Sloan-Kettering Institute, Weill Cornell Medical College, New York, NY 10065, USA.

出版信息

Nucleic Acids Res. 2011 Apr;39(8):3427-45. doi: 10.1093/nar/gkq1328. Epub 2011 Jan 5.

Abstract

Nam8, a component of yeast U1 snRNP, is optional for mitotic growth but required during meiosis, because Nam8 collaborates with Mer1 to promote splicing of essential meiotic mRNAs AMA1, MER2 and MER3. Here, we identify SPO22 and PCH2 as novel targets of Nam8-dependent meiotic splicing. Whereas SPO22 splicing is co-dependent on Mer1, PCH2 is not. The SPO22 intron has a non-consensus 5' splice site (5'SS) that dictates its Nam8/Mer1-dependence. SPO22 splicing relies on Mer1 recognition, via its KH domain, of an intronic enhancer 5'-AYACCCUY. Mutagenesis of KH and the enhancer highlights Arg214 and Gln243 and the CCC triplet as essential for Mer1 activity. The Nam8-dependent PCH2 pre-mRNA has a consensus 5'SS and lacks a Mer1 enhancer. For PCH2, a long 5' exon and a non-consensus intron branchpoint dictate Nam8-dependence. Our results implicate Nam8 in two distinct meiotic splicing regulons. Nam8 is composed of three RRM domains, flanked by N-terminal leader and C-terminal tail segments. The leader, tail and RRM1 are dispensable for splicing meiotic targets and unnecessary for vegetative Nam8 function in multiple synthetic lethal genetic backgrounds. Nam8 activity is enfeebled by alanine mutations in the putative RNA binding sites of the RRM2 and RRM3 domains.

摘要

Nam8 是酵母 U1 snRNP 的一个组成部分,对有丝分裂生长是可选的,但在减数分裂中是必需的,因为 Nam8 与 Mer1 合作促进必需的减数分裂 mRNA AMA1、MER2 和 MER3 的剪接。在这里,我们鉴定出 SPO22 和 PCH2 是 Nam8 依赖的减数分裂剪接的新靶标。虽然 SPO22 的剪接与 Mer1 共依赖,但 PCH2 不是。SPO22 内含子具有非保守的 5'剪接位点(5'SS),决定了其对 Nam8/Mer1 的依赖性。SPO22 的剪接依赖于 Mer1 通过其 KH 结构域识别内含子增强子 5'-AYACCCUY。KH 和增强子的突变凸显了 Arg214 和 Gln243 以及 CCC 三核苷酸对于 Mer1 活性的重要性。依赖 Nam8 的 PCH2 前体 mRNA 具有保守的 5'SS 且缺乏 Mer1 增强子。对于 PCH2,长的 5'外显子和非保守的内含子分支点决定了对 Nam8 的依赖性。我们的结果表明 Nam8 参与了两个不同的减数分裂剪接调控。Nam8 由三个 RRM 结构域组成,由 N 端前导和 C 端尾部片段包围。前导、尾部和 RRM1 对于剪接减数分裂靶标是可有可无的,并且在多个合成致死遗传背景中对于营养生长的 Nam8 功能是不必要的。Nam8 的活性在 RRM2 和 RRM3 结构域的假定 RNA 结合位点的丙氨酸突变中受到削弱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e270/3082912/ecec1ff0fb61/gkq1328f1.jpg

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