Wu L C, Laub P B, Elöve G A, Carey J, Roder H
Chemistry Department, Princeton University, New Jersey 80544.
Biochemistry. 1993 Sep 28;32(38):10271-6. doi: 10.1021/bi00089a050.
Horse heart cytochrome c is one of a small number of proteins for which the folding pathway has been elucidated in structural detail by pulsed hydrogen exchange and NMR. Those studies indicated that a partially folded intermediate with interacting N- and C-terminal helices is formed at an early stage of folding when most of the chain is still disordered. This report describes a peptide model for this early intermediate, consisting of a noncovalent complex between a heme-containing N-terminal fragment (residues 1-38) and a synthetic peptide corresponding to the C-terminal helix (residues 87-104). Far-UV circular dichroism and proton NMR indicate that the isolated peptides are largely disordered, but when combined, they form a flexible, yet tightly bound complex with enhanced helical structure. These results emphasize the importance of interactions between marginally stable elements of secondary structure in forming tertiary subdomains in protein folding.
马心脏细胞色素c是少数几种其折叠途径已通过脉冲氢交换和核磁共振在结构细节上得以阐明的蛋白质之一。那些研究表明,当大部分肽链仍处于无序状态时,在折叠的早期阶段会形成一种具有相互作用的N端和C端螺旋的部分折叠中间体。本报告描述了这种早期中间体的一种肽模型,它由一个含血红素的N端片段(第1至38位残基)和一个对应于C端螺旋的合成肽(第87至104位残基)之间的非共价复合物组成。远紫外圆二色性和质子核磁共振表明,分离的肽在很大程度上是无序的,但当它们结合时,会形成一种具有增强螺旋结构的灵活但紧密结合的复合物。这些结果强调了二级结构边缘稳定元件之间的相互作用在蛋白质折叠中形成三级亚结构域的重要性。