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嗜盐菌 Lsm 蛋白的结构和 RNA 结合特性。

Structure and RNA-Binding Properties of Lsm Protein from Halobacterium salinarum.

机构信息

Institute of Protein Research Russian Academy of Sciences, Pushchino, Moscow Region, 142290, Russia.

出版信息

Biochemistry (Mosc). 2021 Jul;86(7):833-842. doi: 10.1134/S000629792107004X.

Abstract

The structure and the RNA-binding properties of the Lsm protein from Halobacterium salinarum have been determined. A distinctive feature of this protein is the presence of a short L4 loop connecting the β3 and β4 strands. Since bacterial Lsm proteins (also called Hfq proteins) have a short L4 loop and form hexamers, whereas archaeal Lsm proteins (SmAP) have a long L4 loop and form heptamers, it has been suggested that the length of the L4 loop may affect the quaternary structure of Lsm proteins. Moreover, the L4 loop covers the region of SmAP corresponding to one of the RNA-binding sites in Hfq, and thus can affect the RNA-binding properties of the protein. Our results show that the SmAP from H. salinarum forms heptamers and possesses the same RNA-binding properties as homologous proteins with the long L4 loop. Therefore, the length of the L4 does not govern the number of monomers in the protein particles and does not affect the RNA-binding properties of Lsm proteins.

摘要

已经确定了来自嗜盐古菌的 Lsm 蛋白的结构和 RNA 结合特性。该蛋白的一个显著特征是存在一个短的 L4 环,连接β3 和β4 链。由于细菌 Lsm 蛋白(也称为 Hfq 蛋白)具有短的 L4 环并形成六聚体,而古菌 Lsm 蛋白(SmAP)具有长的 L4 环并形成七聚体,因此有人认为 L4 环的长度可能会影响 Lsm 蛋白的四级结构。此外,L4 环覆盖 SmAP 对应于 Hfq 中一个 RNA 结合位点的区域,因此可以影响蛋白的 RNA 结合特性。我们的结果表明,来自嗜盐古菌的 SmAP 形成七聚体,并具有与长 L4 环的同源蛋白相同的 RNA 结合特性。因此,L4 环的长度不决定蛋白颗粒中的单体数量,也不影响 Lsm 蛋白的 RNA 结合特性。

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