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首页> 外文期刊>Biochemistry >A Protein Caught in a Kinetic Trap: Structures and Stabilities of Insulin Disulfide Isomers
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A Protein Caught in a Kinetic Trap: Structures and Stabilities of Insulin Disulfide Isomers

机译:陷入运动陷阱的蛋白质:胰岛素二硫键异构体的结构和稳定性。

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Proinsulin contains six cysteines whose specific pairing (A-A11, A7-B7, and A20-B19) is a defining feature of the insulin fold. Pairing information is contained within A and B domains as demonstrated by studies of insulin chain recombination. Two insulin isomers containing non-native disulfide bridges ([A7-A11, A6-B7, A20-B19] and [A6-A7, A11-B7, A20-B19]), previously prepared by directed chemical synthesis, are metastable and biologically active. Remarkably, the same two isomers are preferentially formed from native insulin or proinsulin following disulfide reassortment in guanidine hydrocholoride. THe absence of other disulife isomers suggests that the observed species exhibit greater relative stability and/or kinetic accessibility. The structure of the first isomer 9{A7-A11, A6-B7, A20-B19], insulin-swap) has been described [Hua, Q.X., Gozani, S.N., Chance, R.E., Hoffmann, J.A., Frank, B.H., and Weiss, M.A. (1995) Nat. Struct. Biol. 2, 129-138]. Here, we deomonstrate that the second isomer (insulin-swap2) is less ordered than the first. Nativelike elements of structure are retained in the B chain, whereas the A chain is largely disordered. Thermodynamic studies of guanidine denaturation demonstrate the instability of the isomers relative to native insulin (DELTADELTAG_u > 3 kcalol). In contrast, insulin-like growth factor I (IGF-I) and the corresponding isomer IGF-swap, formed as alternative products of a bifurcating folding pathway, exhibit similar cooperative unfolding transitions. The insulin isomers are similar in structure and stability to two-disulfide analogues whose partial folds provide models of oxidative folding intermediates. Each exhibits a nativelike B chain and less-ordered A chain. This general asymmetry is consistent witih a hierarchical disulfide pathway in which nascent structure in the B chain provides a template for folding of the A chain. Structures of metastable disulfide isomers provide probes to the topography of an energy landscape.
机译:胰岛素原包含六个半胱氨酸,它们的特定配对(A-A11,A7-B7和A20-B19)是胰岛素折叠的定义特征。如胰岛素链重组研究所示,配对信息包含在A和B域中。以前通过定向化学合成制得的两种含有非天然二硫键的胰岛素异构体([A7-A11,A6-B7,A20-B19]和[A6-A7,A11-B7,A20-B19])是亚稳定的和生物学上的活性。值得注意的是,相同的两个异构体是在盐酸胍中二硫键重配后优先从天然胰岛素或胰岛素原形成的。没有其他双寿异构体表明所观察到的物种表现出更大的相对稳定性和/或动力学可及性。已经描述了第一异构体9(A7-A11,A6-B7,A20-B19,胰岛素交换)的结构[Hua,QX,Gozani,SN,Chance,RE,Hoffmann,JA,Frank,BH和Weiss,MA(1995)Nat。结构。生物学2,129-138]。在这里,我们证明第二种异构体(insulin-swap2)的顺序比第一种异构体少。结构上类似自然的元素保留在B链中,而A链则无序。胍变性的热力学研究证明了异构体相对于天然胰岛素的不稳定性(DELTADELTAG_u> 3 kcal / nol)。相比之下,胰岛素样生长因子I(IGF-1)和相应的异构体IGF交换(形成为分叉折叠途径的替代产品)表现出相似的协同展开过渡。胰岛素异构体的结构和稳定性类似于其部分折叠提供氧化折叠中间体模型的两个二硫化物类似物。每个链均显示一条类似本机的B链和较少排序的A链。这种普遍的不对称性与分级的二硫键途径是一致的,其中B链中的新生结构为A链的折叠提供了模板。亚稳定的二硫键异构体的结构为能量景观的形貌提供了探针。

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