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首页> 外文期刊>Archives of Biochemistry and Biophysics >Divergent folding pathways of two homologous proteins, BPTI and tick anticoagulant peptide: Compartmentalization of folding intermediates and identification of kinetic traps
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Divergent folding pathways of two homologous proteins, BPTI and tick anticoagulant peptide: Compartmentalization of folding intermediates and identification of kinetic traps

机译:两种同源蛋白BPTI和壁虱抗凝血肽的不同折叠途径:折叠中间体的分区和动力学陷阱的鉴定

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Bovine pancreatic trypsin inhibitor (BPTI) and tick anticoagulant peptide (TAP) are two structurally homologous proteins, which have been shown to exhibit distinct mechanisms of oxidative folding. We demonstrate here differences of their folding properties using the technique of disultide scrambling. Two extensively unfolded homologous isomers (beads-form) of BPTI (Cys(5)-Cys(14), Cys(30)-Cys(38), Cys(51)-Cys(55)) and TAP (Cys(5)-Cys(15), Cys(33)-Cys(39), Cys(55)-Cys(59)) were allowed to refold in parallel via disulfide shuffling of 13 potential isomers to form the native structure. Folding intermediates were trapped by acid quenching and analyzed by HPLC. The results reveal the following diversities: (a) there are two predominant folding intermediates of BPTI and seven well-populated folding intermediates of TAP. One of the two predominant BPTI intermediates (Cys(5)-Cys(14), Cys(30)-Cys(51), Cys(38)-Cys(55)) contains a native disulfide Cys(30)-Cys(51) and constitutes about 34% of the total BPTI folding intermediates. In contrast, the TAP counterpart (Cys(5)Cys(15), Cys(33)-Cys(55), Cys(39)-Cys(59)) represents only 5% of the total TAP intermediates; (b) three isomers of TAP sharing a stable non-native disulfide bond Cys(15)-Cys(33) are shown to act as kinetic traps of TAP folding. Their counterparts are conspicuously absent in the BPTI folding; and (c) most significantly, folding intermediates of BPTI are found to be energetically compartmentalized, whereas most folding intermediates of TAP are inter-convertible and exist in dynamic equilibrium. Our studies further demonstrate optimal concentrations of denaturant required for destabilization of kinetic traps and acceleration of TAP folding. (c) 2005 Elsevier Inc. All rights reserved.
机译:牛胰胰蛋白酶抑制剂(BPTI)和壁虱抗凝血肽(TAP)是两种结构同源的蛋白质,已被证明具有不同的氧化折叠机制。我们在这里展示了使用二倍置乱技术的折叠性能差异。 BPTI的两个广泛展开的同源异构体(珠状)(Cys(5)-Cys(14),Cys(30)-Cys(38),Cys(51)-Cys(55))和TAP(Cys(5) -Cys(15),Cys(33)-Cys(39),Cys(55)-Cys(59))通过13种潜在异构体的二硫键改组平行重折叠以形成天然结构。通过酸猝灭捕获折叠中间体,并通过HPLC分析。结果揭示了以下多样性:(a)BPTI有两个主要的折叠中间体和TAP的七个填充良好的折叠中间体。两种主要的BPTI中间体之一(Cys(5)-Cys(14),Cys(30)-Cys(51),Cys(38)-Cys(55))含有天然二硫化物Cys(30)-Cys(51 ),约占BPTI折叠中间体总数的34%。相反,TAP对应物(Cys(5)Cys(15),Cys(33)-Cys(55),Cys(39)-Cys(59))仅占TAP中间体总数的5%; (b)TAP的三个异构体共享一个稳定的非天然二硫键Cys(15)-Cys(33),显示为TAP折叠的动力学陷阱。在BPTI折叠中,它们的同伴明显不存在。 (c)最重要的是,发现BPTI的折叠中间体在能量上是分隔的,而TAP的大多数折叠中间体是可相互转化的,并处于动态平衡状态。我们的研究进一步证明了动力学陷阱失稳和加速TAP折叠所需的变性剂的最佳浓度。 (c)2005 Elsevier Inc.保留所有权利。

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