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乙二醇和钙离子对Mg2+ x腺苷-5'-亚氨基二磷酸与兔骨骼肌肌原纤维结合的影响。

Effect of ethylene glycol and Ca2+ on the binding of Mg2+ x adenyl-5'-yl imidodiphosphate to rabbit skeletal myofibrils.

作者信息

Johnson R E

出版信息

J Biol Chem. 1986 Jan 15;261(2):728-32.

PMID:3941099
Abstract

The binding of Mg2+ X adenyl-5'-yl imidodiphosphate (Mg2+ X AMP-PNP) to rabbit skeletal myofibrils has been measured in aqueous solution and in 50% ethylene glycol in the presence and absence of Ca2+. In water, the observed binding was weak with less than half the calculated myosin active sites filled even at 1 mM Mg2+ X AMP-PNP. In 50% ethylene glycol, the binding is at least 100-fold tighter and extrapolates to the expected number of binding sites. This is contrasted to the small change seen for Mg2+ X ADP binding between the same sets of conditions. This difference between Mg2+ X AMP-PNP and Mg2+ X ADP is attributed to the strong coupling of Mg2+ X AMP-PNP binding to dissociation of myosin cross-bridges. The Ca2+ sensitivity of Mg2+ X AMP-PNP binding in 50% ethylene glycol is taken as further evidence of the thermodynamic coupling of Mg2+ X AMP-PNP binding to cross-bridge dissociation. In addition, the binding of Mg2+ X AMP-PNP in 50% ethylene glycol is biphasic while Mg2+ X ADP binding under the same conditions is not. The biphasic Mg2+ X AMP-PNP binding could be caused by either the presence of two or more classes of cross-bridges or by negative cooperativity, but the presence of only a single class of Mg2+ X ADP-binding sites implies that if multiple classes of sites are involved, they do not simply differ in steric hindrance or accessibility of the binding site as a whole. The importance of using purified AMP-PNP in the study of actomyosin X AMP-PNP complexes is discussed.

摘要

在有或没有Ca2+存在的情况下,已在水溶液和50%乙二醇中测量了Mg2+·腺苷-5'-亚氨二磷酸(Mg2+·AMP-PNP)与兔骨骼肌肌原纤维的结合。在水中,观察到的结合较弱,即使在1 mM Mg2+·AMP-PNP时,填充的肌球蛋白活性位点也不到计算值的一半。在50%乙二醇中,结合至少紧密100倍,并外推至预期的结合位点数。这与在相同条件下Mg2+·ADP结合所观察到的微小变化形成对比。Mg2+·AMP-PNP和Mg2+·ADP之间的这种差异归因于Mg2+·AMP-PNP结合与肌球蛋白横桥解离的强耦合。50%乙二醇中Mg2+·AMP-PNP结合的Ca2+敏感性被视为Mg2+·AMP-PNP结合与横桥解离的热力学耦合的进一步证据。此外,Mg2+·AMP-PNP在50%乙二醇中的结合是双相的,而相同条件下Mg2+·ADP的结合不是。双相的Mg2+·AMP-PNP结合可能是由两类或更多类横桥的存在或负协同性引起的,但仅存在一类Mg2+·ADP结合位点意味着,如果涉及多类位点,它们并非仅仅在空间位阻或整个结合位点的可及性方面存在差异。讨论了在肌动球蛋白·AMP-PNP复合物研究中使用纯化的AMP-PNP的重要性。

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