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Conformational changes in chemically modified Escherichia coli thioredoxin monitored by H/D exchange and electrospray ionization mass spectrometry

机译:通过H / D交换和电喷雾电离质谱法监测化学修饰的大肠杆菌硫氧还蛋白的构象变化

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摘要

Hydrogen/deuterium (H/D) exchange in combination with electrospray ionization mass spectrometry and near-ultraviolet (UV) circular dichroism (CD) was used to study the conformational properties and thermal unfolding of Escherichia coli thioredoxin and its Cys32-alkylated derivatives in 1% acetic acid (pH 2.7). Thermal unfolding of oxidized (Oxi) and reduced (Red) -thioredoxin (TRX) and Cys-32-ethylglutathionyl (GS-ethyl-TRX) and Cys-32-ethylcysteinyl (Cys-ethyl-TRX), which are derivatives of Red-TRX, follow apparent EX1 kinetics as charge-state envelopes, H/D mass spectral exchange profiles, and near-UV CD appear to support a two-state folding/unfolding model. Minor mass peaks in the H/D exchange profiles and nonsuperimposable MS- and CD-derived melting curves, however, suggest the participation of unfolding intermediates leading to the conclusion that the two-state model is an oversimplification of the process. The relative stabilities as measured by melting temperatures by both CD and mass spectral charge states are, Oxi-TRX, GS-ethyl-TRX, Cys-ethyl-TRX, and Red-TRX. The introduction of the Cys-32-ethylglutathionyl group provides extra stabilization that results from additional hydrogen bonding interactions between the ethylglutathionyl group and the protein. Near-UV CD data show that the local environment near the active site is perturbed to almost an identical degree regardless of whether alkylation at Cys-32 is by the ethylglutathionyl group, or the smaller, nonhydrogen-bonding ethylcysteinyl group. Mass spectral data, however, indicate a tighter structure for GS-ethyl-TRX.
机译:氢/氘(H / D)交换结合电喷雾电离质谱和近紫外(UV)圆二色性(CD)用于研究大肠埃希氏菌硫氧还蛋白及其Cys32-烷基化衍生物的构象性质和热解折叠%乙酸(pH 2.7)。氧化的(Oxi)和还原的(Red)-硫氧还蛋白(TRX)和Cys-32-乙基谷胱甘肽(GS-ethyl-TRX)和Cys-32-乙基半胱氨酰基(Cys-乙基-TRX)的热解折叠TRX遵循明显的EX1动力学,因为电荷状态包络,H / D质谱交换图和近UV CD似乎支持两种状态的折叠/展开模型。 H / D交换曲线和不可叠加的MS和CD衍生的熔解曲线中存在较小的峰,但表明中间体中间体的参与导致得出以下结论:两态模型是该过程的过度简化。通过CD和质谱电荷状态的熔融温度测量的相对稳定性为Oxi-TRX,GS-乙基-TRX,Cys-乙基-TRX和Red-TRX。 Cys-32-乙基谷胱甘肽基的引入提供了额外的稳定性,这是由于乙基谷胱甘肽基与蛋白质之间存在额外的氢键相互作用而引起的。 Near-UV CD数据表明,无论Cys-32上的烷基化是通过乙基谷胱甘肽基团还是较小的,非氢键结合的乙基半胱氨酸基团,活性位点附近的局部环境几乎都受到相同程度的干扰。但是,质谱数据表明GS-乙基-TRX的结构更紧密。

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