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细胞色素C折叠-去折叠机制及构象的新见解。

New insights into the folding-unfolding mechanism and conformations of cytochrome C.

作者信息

Li Jiayu, Li Hongbin

机构信息

Department of Chemistry, University of British Columbia 2036 Main Mall Vancouver BC V6T 1Z1 Canada

出版信息

Chem Sci. 2022 May 30;13(25):7498-7508. doi: 10.1039/d2sc01126c. eCollection 2022 Jun 29.

Abstract

Metalloproteins account for over one-third of all proteins in nature and play important roles in biological processes. The formation of the native structures of metalloproteins requires not only the correct folding of the polypeptide chains but also the proper incorporation of metal cofactors. Understanding the folding mechanism of metalloproteins has been challenging. Horse heart cytochrome C (cytc) is a classical model system for protein folding studies. Although a large number of ensemble studies have been carried out to characterize the folding mechanism of cytc, there is still a significant debate on the folding mechanism and the existence of the proposed "foldons". Here, we used single-molecule optical tweezers to probe the mechanical folding-unfolding behaviors of cytc at the single-molecule level. By directly monitoring the folding and unfolding of holo-cytc, we revealed novel insights into the folding of cytc. Our results showed that the structural elements that are distant from the N- and C-termini can exist as a short-lived intermediate, a finding that contrasts with the general belief that the folding and packing of the N- and C-terminal helices are prerequisites for the folding of other structural elements in cytc. In addition, our results present strong evidence that apo-cytc, which has been long believed to be a random coil, is not a true random coil, and weak interactions within the unfolded polypeptide chain exist. Our results bring new insights into our understanding of the folding mechanisms of heme proteins as well as the role of heme in the folding process.

摘要

金属蛋白占自然界所有蛋白质的三分之一以上,在生物过程中发挥着重要作用。金属蛋白天然结构的形成不仅需要多肽链的正确折叠,还需要金属辅因子的恰当掺入。了解金属蛋白的折叠机制一直具有挑战性。马心细胞色素C(cytc)是蛋白质折叠研究的经典模型系统。尽管已经进行了大量的整体研究来表征cytc的折叠机制,但关于折叠机制以及所提出的“折叠子”的存在仍存在重大争议。在此,我们使用单分子光镊在单分子水平上探测cytc的机械折叠-解折叠行为。通过直接监测全细胞色素C的折叠和解折叠,我们揭示了关于cytc折叠的新见解。我们的结果表明,远离N端和C端的结构元件可以作为一种短暂存在的中间体存在,这一发现与一般观点相反,即N端和C端螺旋的折叠和堆积是cytc中其他结构元件折叠的先决条件。此外,我们的结果提供了强有力的证据,长期以来被认为是无规卷曲的脱辅基细胞色素C并非真正的无规卷曲,并且在未折叠的多肽链内存在弱相互作用。我们的结果为我们理解血红素蛋白的折叠机制以及血红素在折叠过程中的作用带来了新的见解。

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