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Effects of Metal Ions Temperature and a Denaturant on the Oxidative Folding Pathways of Bovine α-Lactalbumin

机译:金属离子温度和变性剂对牛α-乳清蛋白氧化折叠途径的影响

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摘要

Bovine α-lactalbumin (αLA) has four disulfide (SS) bonds in the native form (N). On the oxidative folding pathways of this protein, two specific SS folding intermediates, i.e., (61–77, 73–91) and des[6–120], which have two and three native SS bonds, respectively, accumulate predominantly in the presence of Ca2+. In this study, we reinvestigated the pathways using a water-soluble cyclic selenoxide reagent, trans-3,4-dihydroxyselenolane oxide (DHSox), as a strong and quantitative oxidant to oxidize the fully reduced form (R). In the presence of ethylenediaminetetraacetic acid (EDTA) (under a metal-free condition), SS formation randomly proceeded, and N did not regenerate. On the other hand, two specific SS intermediates transiently generated in the presence of Ca2+. These intermediates could be assigned to (61–77, 73–91) and des[6–120] having two common SS bonds, i.e., Cys61-Cys77 and Cys73-Cys91, near the calcium binding pocket of the β-sheet domain. Much faster folding to N was observed in the presence of Mn2+, whereas Na+, K+, Mg2+, and Zn2+ did not affect the pathways. The two key intermediates were susceptible to temperature and a denaturant. The oxidative folding pathways revealed were significantly different from those of hen egg white lysozyme, which has the same SS-bonding pattern as αLA, suggesting that the folding pathways of SS-containing proteins can alter depending on the amino acid sequence and other factors, even when the SS-bond topologies are similar to each other.
机译:牛α-乳白蛋白(αLA)具有四个天然形式(N)的二硫键(SS)。在该蛋白的氧化折叠途径上,两种特定的SS折叠中间体,即分别具有两个和三个天然SS键的(61-77、73-91)和des [6-120],主要在存在时积累的Ca 2 + 。在这项研究中,我们使用水溶性环状亚硒酸盐试剂反式3,4-二羟基硒醇氧化物(DHS ox )作为强而定量的氧化剂来氧化完全还原的形式( R)。在乙二胺四乙酸(EDTA)存在下(在无金属条件下),SS的形成随机进行,N不会再生。另一方面,在Ca 2 + 存在下会短暂生成两种特定的SS中间体。这些中间体可以分配给(61-77、73-91)和des [6-120],它们具有两个常见的SS键,即β-sheet结构域的钙结合口袋附近的Cys61-Cys77和Cys73-Cys91。在Mn 2 + 的存在下,折叠到N的速度快得多,而Na + ,K + ,Mg 2+ < / sup>和Zn 2 + 均不影响该途径。两种关键中间体均易受温度和变性剂的影响。揭示的氧化折叠途径与鸡蛋清溶菌酶的氧化折叠途径显着不同,后者与αLA具有相同的SS结合模式,这表明含SS的蛋白质的折叠途径可以根据氨基酸序列和其他因素而改变,甚至当SS键的拓扑彼此相似时。

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