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铜离子(Cu2+)对合成的毛罗毒素体外氧化折叠的影响。

Effect of Cu2+ on the oxidative folding of synthetic maurotoxin in vitro.

作者信息

Regaya I, Andreotti N, Di Luccio E, De Waard M, Sabatier J-M

机构信息

ERT 62 "Ingénierie des protéines", Université de la Méditerranée-Ambrilia Biopharma Inc., Faculté de Médecine Nord, Boulevard Pierre Dramard, 13916 Marseille Cédex 20, France.

出版信息

J Biomol Struct Dyn. 2008 Aug;26(1):75-82. doi: 10.1080/07391102.2008.10507225.

DOI:10.1080/07391102.2008.10507225
PMID:18533728
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4850228/
Abstract

Maurotoxin (MTX) is a 34-mer scorpion toxin cross-linked by four disulphide bridges that acts on various K+ channel types. It folds according to an alpha/beta scaffold, i.e., a helix connected to a two stranded beta-sheet by two disulphide bridges. In a former study, various parameters that affect the oxidation and folding of the reduced form of synthetic MTX were investigated in vitro. It was found that MTX achieves its final 3-D structure by evolving over time through a series of oxidation intermediates, from the least to the most oxidized species. MTX oxidative intermediates can be studied by iodoacetamide alkylation of free cysteine residues followed by mass spectrometry analysis. Here, we have analysed the effect of Cu2+ (0.1 to 50 mM) on the kinetics of MTX oxidative folding and found that it dramatically speeds up the formation of the four-disulphide bridged, native-like, MTX (maximal production within 30 minutes instead of > 60 hours). This catalysing effect of Cu2+ was found to be concentration-dependent, reaching a plateau at 10 mM copper ions. Cu2+ was also found to prevent the slow transition of a three disulphide-bridged MTX intermediate towards the final four disulphide-bridged product (12% of total MTX). The data are discussed in light of the potential effects of Cu2+ on MTX secondary structure formation, disulphide bridging and peptidyl prolyl cis-trans isomerization.

摘要

毛罗毒素(MTX)是一种由四个二硫键交联的34肽蝎毒素,作用于多种类型的钾离子通道。它按照α/β支架进行折叠,即一条螺旋链通过两个二硫键与一个双链β折叠相连。在之前的一项研究中,体外研究了影响合成MTX还原形式氧化和折叠的各种参数。结果发现,MTX通过一系列氧化中间体随时间演变,从氧化程度最低的物种到最高的物种,从而实现其最终的三维结构。MTX氧化中间体可以通过对游离半胱氨酸残基进行碘乙酰胺烷基化,然后进行质谱分析来研究。在此,我们分析了Cu2+(0.1至50 mM)对MTX氧化折叠动力学的影响,发现它能显著加速四二硫键桥连的、类似天然构象的MTX的形成(30分钟内达到最大产量,而不是超过60小时)。发现Cu2+的这种催化作用具有浓度依赖性,在10 mM铜离子时达到平稳状态。还发现Cu2+可阻止三二硫键桥连的MTX中间体缓慢转变为最终的四二硫键桥连产物(占总MTX的12%)。根据Cu2+对MTX二级结构形成、二硫键桥连和肽基脯氨酰顺反异构化的潜在影响对数据进行了讨论。

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