Arluison Véronique, Mura Cameron, Guzmán Maria Romero, Liquier Jean, Pellegrini Olivier, Gingery Mari, Régnier Philippe, Marco Sergio
Institut de Biologie Physico-Chimique, CNRS UPR 9073 conventionnée avec l'université Paris 7, 13 rue P. et M. Curie, 75005 Paris, France.
J Mol Biol. 2006 Feb 10;356(1):86-96. doi: 10.1016/j.jmb.2005.11.010. Epub 2005 Nov 22.
Hfq is a nucleic acid-binding protein that functions as a global regulator of gene expression by virtue of its interactions with several small, non-coding RNA species. Originally identified as an Escherichia coli host factor required for RNA phage Qbeta replication, Hfq is now known to post-transcriptionally regulate bacterial gene expression by modulating both mRNA stability and translational activity. Recently shown to be a member of the diverse Sm protein family, Hfq adopts the OB-like fold typical of other Sm and Sm-like (Lsm) proteins, and also assembles into toroidal homo-oligomers that bind single-stranded RNA. Similarities between the structures, functions, and evolution of Sm/Lsm proteins and Hfq are continually being discovered, and we now report an additional, unexpected biophysical property that is shared by Hfq and other Sm proteins: E.coli Hfq polymerizes into well-ordered fibres whose morphologies closely resemble those found for Sm-like archaeal proteins (SmAPs). However, the hierarchical assembly of these fibres is dissimilar: whereas SmAPs polymerize into polar tubes (and striated bundles of such tubes) by head-to-tail stacking of individual homo-heptamers, helical Hfq fibres are formed by cylindrical slab-like layers that consist of 36 subunits arranged as a hexamer of Hfq homo-hexamers (i.e. protofilaments in a 6 x 6 arrangement). The different fibrillar ultrastructures formed by Hfq and SmAP are presented and examined herein, with the overall goal of elucidating another similarity amongst the diverse members of the Sm protein family.
Hfq是一种核酸结合蛋白,通过与几种小的非编码RNA相互作用,作为基因表达的全局调节因子发挥作用。Hfq最初被鉴定为RNA噬菌体Qβ复制所需的大肠杆菌宿主因子,现在已知它通过调节mRNA稳定性和翻译活性在转录后调节细菌基因表达。最近被证明是多样的Sm蛋白家族的成员,Hfq采用其他Sm和Sm样(Lsm)蛋白典型的OB样折叠,并且还组装成结合单链RNA的环形同源寡聚体。Sm/Lsm蛋白和Hfq在结构、功能和进化方面的相似性不断被发现,我们现在报告Hfq和其他Sm蛋白共有的另一种意想不到的生物物理特性:大肠杆菌Hfq聚合成排列有序的纤维,其形态与类Sm古菌蛋白(SmAPs)非常相似。然而,这些纤维的分级组装是不同的:SmAPs通过单个同源七聚体的头对头堆叠聚合成极管(以及这种管的条纹束),而螺旋状的Hfq纤维由圆柱形板状层形成,该层由36个亚基组成,排列成Hfq同源六聚体的六聚体(即6×6排列的原丝)。本文展示并研究了由Hfq和SmAP形成的不同纤维超微结构,总体目标是阐明Sm蛋白家族不同成员之间的另一种相似性。