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突变筛选鉴定出β-肌动蛋白的关键氨基酸残基,这些残基介导其折叠中间体与真核细胞溶质伴侣蛋白CCT之间的相互作用。

Mutational screen identifies critical amino acid residues of beta-actin mediating interaction between its folding intermediates and eukaryotic cytosolic chaperonin CCT.

作者信息

McCormack E A, Rohman M J, Willison K R

机构信息

Institute of Cancer Research, Chester Beatty Laboratories, 237 Fulham Road, London, SW3 6JB, United Kingdom.

出版信息

J Struct Biol. 2001 Aug;135(2):185-97. doi: 10.1006/jsbi.2001.4389.

Abstract

The three-dimensional reconstruction of apo-CCT-alpha-actin by cryoelectron microscopy shows that actin binds either the CCTbeta-CCTdelta or the CCTepsilon-CCTdelta subunit pairs of the chaperonin in an open and apparently quasi-native conformation. The CCT-binding sites are seen located at the tips of the two arms of actin and these same regions of actin have been implicated in CCT binding through beta-actin peptide-array screening. Three main CCT binding regions exist: actin Sites I, II, and III, which are composed of loops that are surface-exposed in native actin. Sixty-eight amino acid residues on beta-actin have been screened by mutagenesis for effects on CCT interaction in quantitative in vitro translation assays in rabbit reticulocyte lysate. Actin seems to be folding cooperatively on chaperonin, since certain mutants discriminate CCT binding from processing. Actin Site II, located at the tip of actin subdomain 4, is the major determinant for CCT binding. Site II is composed of two anti-parallel extended beta-strands, with F200-T203 and D244 contributing substantially to the binding site. The substrate recognition chemistry of CCT thus seems different from that of Group I chaperonins and probably reflects the fact that it needs to be highly specific to enable capture and folding of the actins and tubulins.

摘要

通过冷冻电子显微镜对载脂蛋白 - CCT - α - 肌动蛋白进行的三维重建显示,肌动蛋白以开放且明显类似天然的构象与伴侣蛋白的CCTβ - CCTδ或CCTε - CCTδ亚基对结合。CCT结合位点位于肌动蛋白两条臂的末端,并且通过β - 肌动蛋白肽阵列筛选发现肌动蛋白的这些相同区域与CCT结合有关。存在三个主要的CCT结合区域:肌动蛋白位点I、II和III,它们由天然肌动蛋白表面暴露的环组成。在兔网织红细胞裂解物的定量体外翻译试验中,通过诱变对β - 肌动蛋白上的68个氨基酸残基进行了筛选,以研究其对CCT相互作用的影响。肌动蛋白似乎在伴侣蛋白上协同折叠,因为某些突变体区分了CCT结合与加工过程。位于肌动蛋白亚结构域4末端的肌动蛋白位点II是CCT结合的主要决定因素。位点II由两条反平行延伸的β链组成,F200 - T203和D244对结合位点有很大贡献。因此,CCT的底物识别化学似乎与I组伴侣蛋白不同,这可能反映了一个事实,即它需要高度特异性才能捕获和折叠肌动蛋白和微管蛋白。

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