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酵母Sm蛋白环的SmG、SmE和SmF亚基的结构-功能分析及遗传相互作用

Structure-function analysis and genetic interactions of the SmG, SmE, and SmF subunits of the yeast Sm protein ring.

作者信息

Schwer Beate, Kruchten Joshua, Shuman Stewart

机构信息

Microbiology and Immunology Department, Weill Cornell Medical College, New York, New York 10065, USA.

Molecular Biology Program, Sloan-Kettering Institute, New York, New York 10065, USA.

出版信息

RNA. 2016 Sep;22(9):1320-8. doi: 10.1261/rna.057448.116. Epub 2016 Jul 14.

Abstract

A seven-subunit Sm protein ring forms a core scaffold of the U1, U2, U4, and U5 snRNPs that direct pre-mRNA splicing. Using human snRNP structures to guide mutagenesis in Saccharomyces cerevisiae, we gained new insights into structure-function relationships of the SmG, SmE, and SmF subunits. An alanine scan of 19 conserved amino acids of these three proteins, comprising the Sm RNA binding sites or inter-subunit interfaces, revealed that, with the exception of Arg74 in SmF, none are essential for yeast growth. Yet, for SmG, SmE, and SmF, as for many components of the yeast spliceosome, the effects of perturbing protein-RNA and protein-protein interactions are masked by built-in functional redundancies of the splicing machine. For example, tests for genetic interactions with non-Sm splicing factors showed that many benign mutations of SmG, SmE, and SmF (and of SmB and SmD3) were synthetically lethal with null alleles of U2 snRNP subunits Lea1 and Msl1. Tests of pairwise combinations of SmG, SmE, SmF, SmB, and SmD3 alleles highlighted the inherent redundancies within the Sm ring, whereby simultaneous mutations of the RNA binding sites of any two of the Sm subunits are lethal. Our results suggest that six intact RNA binding sites in the Sm ring suffice for function but five sites may not.

摘要

一个由七个亚基组成的Sm蛋白环构成了指导前体mRNA剪接的U1、U2、U4和U5小核核糖核蛋白颗粒(snRNP)的核心支架。利用人类snRNP结构来指导酿酒酵母中的诱变,我们对SmG、SmE和SmF亚基的结构-功能关系有了新的认识。对这三种蛋白质的19个保守氨基酸进行丙氨酸扫描,这些氨基酸构成了Sm RNA结合位点或亚基间界面,结果显示,除了SmF中的Arg74外,其他氨基酸对酵母生长都不是必需的。然而,对于SmG、SmE和SmF,就像酵母剪接体的许多成分一样,干扰蛋白质-RNA和蛋白质-蛋白质相互作用的影响被剪接机器内置的功能冗余所掩盖。例如,与非Sm剪接因子的遗传相互作用测试表明,SmG、SmE和SmF(以及SmB和SmD3)的许多良性突变与U2 snRNP亚基Lea1和Msl1的无效等位基因合成致死。对SmG、SmE、SmF、SmB和SmD3等位基因的成对组合测试突出了Sm环内固有的冗余性,即任何两个Sm亚基的RNA结合位点同时发生突变是致死的。我们的结果表明,Sm环中六个完整的RNA结合位点足以发挥功能,但五个位点可能不行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4069/4986888/a405d1f8e011/1320F1.jpg

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