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酸和化学物质诱导的麦角酰胺B构象变化。存在部分结构化的多种中间体。

Acid and chemical induced conformational changes of ervatamin B. Presence of partially structured multiple intermediates.

作者信息

Sundd Monica, Kundu Suman, Jagannadham Medicherla V

机构信息

Molecular Biology Unit, Institute of Medical Sciences, Banaras Hindu University, Varanasi-221005, India.

出版信息

J Biochem Mol Biol. 2002 Mar 31;35(2):143-54. doi: 10.5483/bmbrep.2002.35.2.143.

Abstract

The structural and functional aspects of ervatamin B were studied in solution. Ervatamin B belongs to the alpha + beta class of proteins. The intrinsic fluorescence emission maximum of the enzyme was at 350 nm under neutral conditions, and at 355 nm under denaturing conditions. Between pH 1.0- 2.5 the enzyme exists in a partially unfolded state with minimum or no tertiary structure, and no proteolytic activity. At still lower pH, the enzyme regains substantial secondary structure, which is predominantly a beta-sheet conformation and shows a strong binding to 8-anilino-1- napthalene-sulfonic acid (ANS). In the presence of salt, the enzyme attains a similar state directly from the native state. Under neutral conditions, the enzyme was stable in urea, while the guanidine hydrochloride (GuHCl) induced equilibrium unfolding was cooperative. The GuHCl induced unfolding transition curves at pH 3.0 and 4.0 were non-coincidental, indicating the presence of intermediates in the unfolding pathway. This was substantiated by strong ANS binding that was observed at low concentrations of GuHCl at both pH 3.0 and 4.0. The urea induced transition curves at pH 3.0 were, however, coincidental, but non-cooperative. This indicates that the different structural units of the enzyme unfold in steps through intermediates. This observation is further supported by two emission maxima in ANS binding assay during urea denaturation. Hence, denaturant induced equilibrium unfolding pathway of ervatamin B, which differs from the acid induced unfolding pathway, is not a simple two-state transition but involves intermediates which probably accumulate at different stages of protein folding and hence adds a new dimension to the unfolding pathway of plant proteases of the papain superfamily.

摘要

在溶液中研究了ervatamin B的结构和功能方面。ervatamin B属于α+β类蛋白质。该酶在中性条件下的固有荧光发射最大值在350nm,在变性条件下为355nm。在pH 1.0 - 2.5之间,酶以部分展开状态存在,具有最小或没有三级结构,且无蛋白水解活性。在更低的pH值下,酶恢复大量二级结构,主要是β-折叠构象,并显示出与8-苯胺基-1-萘磺酸(ANS)的强烈结合。在有盐存在的情况下,酶直接从天然状态达到类似状态。在中性条件下,酶在尿素中稳定,而盐酸胍(GuHCl)诱导的平衡去折叠是协同的。在pH 3.0和4.0时,GuHCl诱导的去折叠转变曲线不重合,表明在去折叠途径中存在中间体。这在pH 3.0和4.0的低浓度GuHCl下观察到的强烈ANS结合中得到证实。然而,在pH 3.0时尿素诱导的转变曲线是重合的,但不具有协同性。这表明酶的不同结构单元通过中间体逐步展开。在尿素变性过程中的ANS结合测定中的两个发射最大值进一步支持了这一观察结果。因此,与酸诱导的去折叠途径不同,变性剂诱导的ervatamin B平衡去折叠途径不是简单的两态转变,而是涉及可能在蛋白质折叠的不同阶段积累的中间体,因此为木瓜蛋白酶超家族的植物蛋白酶的去折叠途径增添了新的维度。

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