Abteilung für Molekulare Strukturbiologie, Institut für Mikrobiologie und Genetik, Georg-August-Universität Göttingen, Göttingen, Germany.
Nat Struct Mol Biol. 2010 Feb;17(2):210-5. doi: 10.1038/nsmb.1746. Epub 2010 Jan 31.
Protein folding is often mediated by molecular chaperones. Recently, a novel class of intramolecular chaperones has been identified in tailspike proteins of evolutionarily distant viruses, which require a C-terminal chaperone for correct folding. The highly homologous chaperone domains are interchangeable between pre-proteins and release themselves after protein folding. Here we report the crystal structures of two intramolecular chaperone domains in either the released or the pre-cleaved form, revealing the role of the chaperone domain in the formation of a triple-beta-helix fold. Tentacle-like protrusions enclose the polypeptide chains of the pre-protein during the folding process. After the assembly, a sensory mechanism for correctly folded beta-helices triggers a serine-lysine catalytic dyad to autoproteolytically release the mature protein. Sequence analysis shows a conservation of the intramolecular chaperones in functionally unrelated proteins sharing beta-helices as a common structural motif.
蛋白质折叠通常由分子伴侣介导。最近,在进化上相距甚远的病毒的尾刺蛋白中发现了一类新型的分子内伴侣,它们需要 C 端伴侣才能正确折叠。高度同源的伴侣结构域在原蛋白之间可互换,并在蛋白质折叠后自行释放。本文报告了两种分子内伴侣结构域在释放或预切割形式下的晶体结构,揭示了伴侣结构域在形成三-β-螺旋折叠中的作用。在折叠过程中,触手状的突起将原蛋白的多肽链包围起来。组装完成后,一个用于正确折叠β-螺旋的感应机制触发丝氨酸-赖氨酸催化二联体进行自身蛋白水解,从而释放成熟蛋白。序列分析表明,具有β-螺旋作为共同结构模体的功能上不相关的蛋白质中存在分子内伴侣的保守性。