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A water-soluble selenoxide reagent as a useful probe for the reactivity and folding of polythiol peptides

机译:水溶性亚硒酸盐试剂可用作多硫醇肽反应性和折叠的有用探针

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摘要

A water-soluble selenoxide (DHSox) having a five-membered ring structure enables rapid and selective conversion of cysteinyl SH groups in a polypeptide chain into SS bonds in a wide pH and temperature range. It was previously demonstrated that the second-order rate constants for the SS formation with DHSox would be proportional to the number of the free SH groups present in the substrate if there is no steric congestion around the SH groups. In the present study, kinetics of the SS formation with DHSox was extensively studied at pH 4–10 and 25 °C by using reduced ribonuclease A, recombinant hirudin variant (CX-397), insulin A- and B-chains, and relaxin A-chain, which have two to eight cysteine residues, as polythiol substrates. The obtained rate constants showed stochastic SS formation behaviors under most conditions. However, the rate constants for CX-397 at pH 8.0 and 10.0 were not proportional to the number of the free SH groups, suggesting that the SS intermediate ensembles possess densely packed structures under weakly basic conditions. The high two-electron redox potential of DHSox (375 mV at 25 °C) compared to l-cystine supported the high ability of DHSox for SS formation in a polypeptide chain. Interestingly, the rate constants of the SS formation jumped up at a pH around the pKa value of the cysteinyl SH groups. The SS formation velocity was slightly decreased by addition of a denaturant due probably to the interaction between the denaturant and the peptide. The stochastic behaviors as well as the absolute values of the second-order rate constants in comparison to dithiothreitol (DTTred) are useful to probe the chemical reactivity and conformation, hence the folding, of polypeptide chains.
机译:具有五元环结构的水溶性亚硒酸盐(DHS ox )能够在宽的pH和温度范围内将多肽链中的半胱氨酰SH基快速选择性地转化为SS键。先前已经证明,如果在SH基团周围没有空间拥塞,则具有DHS ox 的SS形成的二阶速率常数将与底物中存在的游离SH基团的数量成比例。 。在本研究中,通过使用还原核糖核酸酶A,重组水rud素变体(CX-397),胰岛素A-,在pH 4-10和25°C下广泛研究了DHS ox 与SS形成动力学。具有两个至八个半胱氨酸残基的B链,B链和松弛素A链作为多硫醇底物。所获得的速率常数在大多数条件下显示出随机的SS形成行为。然而,CX-397在pH 8.0和10.0时的速率常数与游离SH基团的数量不成比例,这表明在弱碱性条件下,SS中间乐团具有密集堆积的结构。与L-胱氨酸相比,DHS ox 的高双电子氧化还原电位(在25°C时为375 mV)支持DHS ox 在多肽中形成SS的高能力。链。有趣的是,在半胱氨酰SH基团的pKa值附近的pH下,SS形成的速率常数跃升。通过加入变性剂,SS的形成速度略有下降,这可能是由于变性剂与肽之间的相互作用所致。与二硫苏糖醇(DTT red )相比,随机行为以及二级速率常数的绝对值可用于探测多肽链的化学反应性和构象,从而对其进行折叠。

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