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Electrolytic Reduction: Modification of Proteins Occurring in Isoelectric Focusing Electrophoresis and in Electrolytic Reactions in the Presence of High Salts

机译:电解还原:等电聚焦电泳和高盐存在下的电解反应中发生的蛋白质修饰

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摘要

Artifacts in two-dimensional electrophoresis (2-DE) caused by the presence of salts in isoelectric focusing (IEF) have been previously described as a result of increasing conductivity and inducing electroosmosis. However, electrolysis induced by the presence of salts should not be disregarded. In this study, electrolytic reduction-oxidation reaction (redox) was found to be enhanced in the presence of salts in IEF. The consequence of the electrolytic redox leads to acidification of the low-pH region and alkalization of the high-pH region within the immobilized pH gradient (IPG) strip. As a result, a breakdown of immobilized pH buffer near the high pH region of IPG strips along with reduction of basic proteins resulted in uncharacterized artifacts in 2-DE. Electrolytic reduction in the presence of alkali and alkaline metal ions was demonstrated to reduce 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT), protein disulfide bonds, and protein carboxylic acids. Importantly, semipreparative electrolytic reduction of proteins can be carried out in the presence of sodium ions in a homemade electrolytic apparatus. These findings give additional explanations to the observed artifacts in 2-DE and reveal the unknown effects of salts in IEF. Moreover, we have provided a method with the potential to convert proteins or peptides to corresponding modified products containing aldehyde groups that can be used for conjugation with amine-containing compounds.
机译:由于增加了电导率并引起电渗,先前已经描述了由于等电聚焦(IEF)中存在盐而在二维电泳(2-DE)中产生的伪影。但是,不应忽略由于盐的存在而引起的电解。在这项研究中,发现在IEF中存在盐时,电解还原-氧化反应(redox)会增强。电解氧化还原的结果导致固定pH梯度(IPG)试纸内低pH值区域酸化和高pH值区域碱化。结果,IPG条带高pH区域附近固定的pH缓冲液的分解以及碱性蛋白质的减少导致2-DE中未表征的伪影。已证明在碱金属和碱金属离子的存在下进行电解还原可还原3-(4,5-二甲基噻唑-2-基)-2,5-二苯基溴化四唑(MTT),蛋白质二硫键和蛋白质羧酸。重要的是,可以在自制的电解装置中在钠离子存在下进行蛋白质的半制备性电解还原。这些发现为在2-DE中观察到的伪影提供了进一步的解释,并揭示了盐在IEF中的未知作用。此外,我们提供了一种具有将蛋白质或肽转化为含有醛基的相应修饰产物的潜力的方法,该产物可用于与含胺化合物结合。

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