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肌球蛋白的硫醇。IV. S1硫醇的“异常”反应性及S2硫醇周围的构象变化。

Thiols of myosin. IV. "Abnormal" reactivity of S1 thiol and the conformational changes around S2 thiol.

作者信息

Takamori K, Kato K A, Sekine T

出版信息

J Biochem. 1976 Jul;80(1):101-10. doi: 10.1093/oxfordjournals.jbchem.a131241.

Abstract

The flexibility of the tertiary structure around the active site of myosin ATPase [EC 3.6.1.3] was studied using the reactivity of two specific thiol groups, S1 and S2, as a structural probe. The following four maleimide derivatives were used as thiol-directed reagents: N-ethylmaleimide (NEM), N-(4-methoxy-2-benzimidazolyl methyl) maleimide (MBM), N-(p-(2-benzimidazolyl)phenyl)maleimide (BIPM) and N-(4-dimethyl-amino-3,5-dinitrophenyl)maleimide (DDPM). 1. All the maleimide derivatives used activated the Ca2+-ATPase activity and inhibited the EDTA-ATPase activity, like NEM, indicating that they modified S1. The rate of modification of S1 by NEM and BIPM increased with increasing pH, while that by DDPM decreased. BIPM simultaneously modified S1 and S2. 2. S1 showed much higher reactivity toward the maleimides, except for BIPM, than did N-acetylcysteine (N-Ac-Cys) a low molecular-weight model compound. The extremely small pKa value of S1, 6.28, accounted for this high reactivity. In addition, the ATP-induced increase in its reactivity inducated that S1 was in a buried state. Kinetic analysis showed that the teritiary structure around S1 at alkaline pH differed from that at acidic pH. 3. The apparent rate constant of S2-modification with NEM was approximately one seven-hundredth and one four-hundredth of those of S1 and N-Ac-Cys, respectively. Fluorimetric studies using BIPM revealed that S2 in the buried state was exposed upon adding ATP; this was compensated by the burying of some other thiol group(s) (Sp). Non-linearity of the Arrhenius plots of the reaction rate of S2 suggested that the S2 region of myosin had different conformations at high and low temperatures, the transition temperature being 10--15degrees. This non-linearity completely disappeared in the presence of Mg2+-ATP. On the other hand, Arrhenius plots for the thiols reactive to BIPM did not show non-linearity in the presence or absence of ATP.

摘要

利用两个特定巯基(S1和S2)的反应活性作为结构探针,研究了肌球蛋白ATP酶[EC 3.6.1.3]活性位点周围三级结构的灵活性。使用了以下四种马来酰亚胺衍生物作为巯基导向试剂:N-乙基马来酰亚胺(NEM)、N-(4-甲氧基-2-苯并咪唑基甲基)马来酰亚胺(MBM)、N-(对-(2-苯并咪唑基)苯基)马来酰亚胺(BIPM)和N-(4-二甲基氨基-3,5-二硝基苯基)马来酰亚胺(DDPM)。1. 所有使用的马来酰亚胺衍生物都像NEM一样激活了Ca2 + -ATP酶活性并抑制了EDTA-ATP酶活性,这表明它们修饰了S1。NEM和BIPM对S1的修饰速率随pH升高而增加,而DDPM对S1的修饰速率则降低。BIPM同时修饰了S1和S2。2. 除BIPM外,S1对马来酰亚胺的反应活性比低分子量模型化合物N-乙酰半胱氨酸(N-Ac-Cys)高得多。S1极低的pKa值为6.28,这解释了其高反应活性。此外,ATP诱导其反应活性增加,表明S1处于埋藏状态。动力学分析表明,碱性pH下S1周围的三级结构与酸性pH下不同。3. NEM对S2修饰的表观速率常数分别约为S1和N-Ac-Cys的表观速率常数的七百分之一和四百分之一。使用BIPM的荧光研究表明,添加ATP后,埋藏状态的S2会暴露出来;这被其他一些巯基(Sp)的埋藏所补偿。S2反应速率的阿伦尼乌斯图的非线性表明,肌球蛋白的S2区域在高温和低温下具有不同的构象,转变温度为10 - 15摄氏度。在Mg2 + -ATP存在下,这种非线性完全消失。另一方面,对BIPM有反应的巯基的阿伦尼乌斯图在有无ATP的情况下均未显示出非线性。

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