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酿酒酵母Lsm3八聚体的晶体结构:对Lsm环组织和募集的影响

Crystal structure of Lsm3 octamer from Saccharomyces cerevisiae: implications for Lsm ring organisation and recruitment.

作者信息

Naidoo Nishen, Harrop Stephen J, Sobti Meghna, Haynes Paul A, Szymczyna Blair R, Williamson James R, Curmi Paul M G, Mabbutt Bridget C

机构信息

Department of Chemistry and Biomolecular Sciences, Macquarie University, Sydney, New South Wales 2109, Australia.

出版信息

J Mol Biol. 2008 Apr 11;377(5):1357-71. doi: 10.1016/j.jmb.2008.01.007. Epub 2008 Jan 11.

Abstract

Sm and Sm-like (Lsm) proteins are core components of the ribonucleoprotein complexes essential to key nucleic acid processing events within the eukaryotic cell. They assemble as polyprotein ring scaffolds that have the capacity to bind RNA substrates and other necessary protein factors. The crystal structure of yeast Lsm3 reveals a new organisation of the L/Sm beta-propeller ring, containing eight protein subunits. Little distortion of the characteristic L/Sm fold is required to form the octamer, indicating that the eukaryotic Lsm ring may be more pliable than previously thought. The homomeric Lsm3 octamer is found to successfully recruit Lsm6, Lsm2 and Lsm5 directly from yeast lysate. Our crystal structure shows the C-terminal tail of each Lsm3 subunit to be engaged in connections across rings through specific beta-sheet interactions with elongated loops protruding from neighbouring octamers. While these loops are of distinct length for each Lsm protein and generally comprise low-complexity polar sequences, several Lsm C-termini comprise hydrophobic sequences suitable for beta-sheet interactions. The Lsm3 structure thus provides evidence for protein-protein interactions likely utilised by the highly variable Lsm loops and termini in the recruitment of RNA processing factors to mixed Lsm ring scaffolds. Our coordinates also provide updated homology models for the active Lsm[1-7] and Lsm[2-8] heptameric rings.

摘要

Sm蛋白和Sm样(Lsm)蛋白是核糖核蛋白复合物的核心成分,对于真核细胞内关键的核酸加工事件至关重要。它们组装成多蛋白环支架,能够结合RNA底物和其他必要的蛋白质因子。酵母Lsm3的晶体结构揭示了L/Smβ-螺旋桨环的一种新结构,该环包含八个蛋白质亚基。形成八聚体时,特征性的L/Sm折叠几乎没有变形,这表明真核Lsm环可能比之前认为的更具柔韧性。已发现同型Lsm3八聚体能够直接从酵母裂解物中成功招募Lsm6、Lsm2和Lsm5。我们的晶体结构显示,每个Lsm3亚基的C末端尾巴通过与相邻八聚体伸出的延长环的特定β-折叠相互作用,参与跨环连接。虽然这些环对于每个Lsm蛋白的长度不同,且通常包含低复杂性的极性序列,但几个Lsm的C末端包含适合β-折叠相互作用的疏水序列。因此,Lsm3结构为蛋白质-蛋白质相互作用提供了证据,在将RNA加工因子招募到混合Lsm环支架的过程中,高度可变的Lsm环和末端可能利用了这种相互作用。我们的坐标还为活性Lsm[1-7]和Lsm[2-8]七聚体环提供了更新的同源模型。

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