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螺旋倾向影响细胞色素 c' 去折叠状态的构象特性。

Helical Propensity Affects the Conformational Properties of the Denatured State of Cytochrome c'.

机构信息

Department of Chemistry and Biochemistry and Center for Biomolecular Structure and Dynamics, University of Montana, Missoula, Montana.

Department of Chemistry and Biochemistry and Center for Biomolecular Structure and Dynamics, University of Montana, Missoula, Montana.

出版信息

Biophys J. 2018 Jan 23;114(2):311-322. doi: 10.1016/j.bpj.2017.11.3744.

Abstract

Changing the helical propensity of a polypeptide sequence might be expected to affect the conformational properties of the denatured state of a protein. To test this hypothesis, alanines at positions 83 and 87 near the center of helix 3 of cytochrome c' from Rhodopseudomonas palustris were mutated to serine to decrease the stability of this helix. A set of 13 single histidine variants in the A83S/A87S background were prepared to permit assessment of the conformational properties of the denatured state using histidine-loop formation in 3 M guanidine hydrochloride. The data are compared with previous histidine-heme loop formation data for wild-type cytochrome c'. As expected, destabilization of helix 3 decreases the global stabilities of the histidine variants in the A83S/A87S background relative to the wild-type background. Loop stability versus loop size data yields a scaling exponent of 2.1 ± 0.2, similar to the value of 2.3 ± 0.2 obtained for wild-type cytochrome c'. However, the stabilities of all histidine-heme loops, which contain the helix 3 sequence segment, are increased in the A83S/A87S background compared to the wild-type background. Rate constants for histidine-heme loop breakage are similar for the wild-type and A83S/A87S variants. However, for histidine-heme loops that contain the helix 3 sequence segment, the rate constants for loop formation increase in the A83S/A87S background compared to the wild-type background. Thus, residual helical structure appears to stiffen the polypeptide chain slowing loop formation in the denatured state. The implications of these results for protein folding mechanisms are discussed.

摘要

改变多肽序列的螺旋倾向可能会影响蛋白质变性状态的构象性质。为了验证这一假设,将靠近螺旋 3 中心的色氨酸 c'的位置 83 和 87 的丙氨酸突变为丝氨酸,以降低该螺旋的稳定性。在 A83S/A87S 背景下制备了一组 13 种单一组氨酸变体,以允许使用 3 M 盐酸胍中的组氨酸环形成来评估变性状态的构象性质。将数据与野生型细胞色素 c'的先前组氨酸-血红素环形成数据进行比较。正如预期的那样,螺旋 3 的去稳定化降低了 A83S/A87S 背景下相对于野生型背景的组氨酸变体的整体稳定性。环稳定性与环大小数据产生的标度指数为 2.1 ± 0.2,与野生型细胞色素 c'获得的 2.3 ± 0.2 值相似。然而,与野生型背景相比,所有包含螺旋 3 序列片段的组氨酸-血红素环的稳定性都在 A83S/A87S 背景下增加。组氨酸-血红素环断裂的速率常数对于野生型和 A83S/A87S 变体相似。然而,对于包含螺旋 3 序列片段的组氨酸-血红素环,与野生型背景相比,A83S/A87S 背景中环形成的速率常数增加。因此,残留的螺旋结构似乎使多肽链变硬,从而在变性状态下减缓环形成的速度。讨论了这些结果对蛋白质折叠机制的影响。

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