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工程化的混合酵母 Lsm 蛋白环显示出与翻译因子和富含 U 的 RNA 的不同相互作用。

Engineered rings of mixed yeast Lsm proteins show differential interactions with translation factors and U-rich RNA.

机构信息

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

出版信息

Biochemistry. 2010 Mar 23;49(11):2335-45. doi: 10.1021/bi901767w.

Abstract

The Lsm proteins organize as heteroheptameric ring assemblies capable of binding RNA substrates and ancillary protein factors. We have constructed simplified Lsm polyproteins that organize as multimeric ring structures as analogues of the functional Lsm complexes. Polyproteins Lsm[2+3], Lsm[4+1], and Lsm[5+6] incorporate natural sequence extensions as linker peptides between the core Lsm domains. In solution, the recombinant products organize as stable ring oligomers (75 A wide, 20 A pores) in discrete tetrameric and octameric forms. Following immobilization, the polyproteins successfully act as affinity pull-down ligands for proteins within yeast lysate, including native Lsm proteins. Interaction partners were consistent with current models of the mixed Lsm ring assembly in vivo but also suggest that dynamic rearrangements of Lsm protein complexes can occur. The Lsm polyprotein ring complexes were seen in gel shift assays to have a preference for U-rich RNA sequences, with tightest binding measured for Lsm[2+3] with U(10). Polyprotein rings containing truncated forms of Lsm1 and Lsm4 were found to associate with translation, initiation, and elongation protein factors in an RNA-dependent manner. Our findings suggest Lsm1 and/or Lsm4 can interact with translationally active mRNA.

摘要

Lsm 蛋白形成异源七聚体环组装体,能够结合 RNA 底物和辅助蛋白因子。我们构建了简化的 Lsm 多蛋白,它们作为功能 Lsm 复合物的类似物形成多聚体环结构。多蛋白 Lsm[2+3]、Lsm[4+1]和 Lsm[5+6]在核心 Lsm 结构域之间包含天然序列延伸作为连接肽。在溶液中,重组产物以稳定的环寡聚物形式存在(75Å 宽,20Å 孔),呈离散的四聚体和八聚体形式。固定化后,多蛋白成功地作为酵母裂解物中蛋白质的亲和下拉配体起作用,包括天然 Lsm 蛋白。相互作用伙伴与体内混合 Lsm 环组装的现有模型一致,但也表明 Lsm 蛋白复合物的动态重排可能发生。凝胶迁移分析显示 Lsm 多蛋白环复合物对富含 U 的 RNA 序列具有偏好性,对于 U(10),Lsm[2+3]的结合最为紧密。含有 Lsm1 和 Lsm4 截断形式的多蛋白环被发现以 RNA 依赖性方式与翻译起始和延伸蛋白因子结合。我们的发现表明 Lsm1 和/或 Lsm4 可以与翻译活性的 mRNA 相互作用。

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