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重酶解肌球蛋白:关于在ATP存在下存在一种无法与肌动蛋白结合的不应态的证据。

Heavy meromyosin: evidence for a refractory state unable to bind to actin in the presence of ATP.

作者信息

Eisenberg E, Dobkin L, Kielley W W

出版信息

Proc Natl Acad Sci U S A. 1972 Mar;69(3):667-71. doi: 10.1073/pnas.69.3.667.

Abstract

The binding of actin to heavy meromyosin (HMM) in the presence of ATP was studied by analytical ultracentrifuge and ATPase studies. At 0 degrees C, at very low ionic strength, the double-reciprocal plot of HMM ATPase against actin concentration is linear. If one assumes that all of the HMM is bound to actin when the ATPase activity equals V(max), then, at an actin concentration where the actin-HMM ATPase is 85% of V(max), all but 15% of the HMM should be complexed with actin. However, when the binding of HMM to actin in the presence of ATP was measured with the analytical ultracentrifuge, more than 60% of the HMM was not bound to actin. From experiments with EDTA- and Ca-ATPases it seemed unlikely that the unbound HMM was denatured. It is thus possible that during the steady-state hydrolysis of ATP, HMM spends more than 50% of its cycle of interaction with actin and ATP in a "refractory state," unable to bind to actin, i.e., while an HMM molecule goes through one cycle of interaction with actin and ATP, an actin monomer could bind and release several HMM molecules so that the turnover rate per mole of added actin would be considerably greater than that per mole of added HMM. Comparison of the rate of ATPase activity at very high actin concentration with that at very high HMM concentration shows that this is indeed so. Therefore, both kinetic and ultracentrifuge studies suggest that the HMM exists in a refractory state during a large part of its cycle of interaction with actin and ATP.

摘要

通过分析超速离心和ATP酶研究,对ATP存在下肌动蛋白与重酶解肌球蛋白(HMM)的结合进行了研究。在0摄氏度、极低离子强度下,HMM ATP酶相对于肌动蛋白浓度的双倒数图呈线性。如果假设当ATP酶活性等于V(max)时所有HMM都与肌动蛋白结合,那么在肌动蛋白-HMM ATP酶为V(max)的85%的肌动蛋白浓度下,除15%外的所有HMM都应与肌动蛋白形成复合物。然而,当用分析超速离心法测量ATP存在下HMM与肌动蛋白的结合时,超过60%的HMM未与肌动蛋白结合。从用EDTA-ATP酶和Ca-ATP酶进行的实验来看,未结合的HMM不太可能变性。因此,在ATP的稳态水解过程中,HMM在其与肌动蛋白和ATP相互作用的循环中可能有超过50%的时间处于“不应期”,无法与肌动蛋白结合,也就是说,当一个HMM分子经历一个与肌动蛋白和ATP相互作用的循环时,一个肌动蛋白单体可以结合并释放几个HMM分子,这样每摩尔添加的肌动蛋白的周转率将大大高于每摩尔添加的HMM的周转率。在非常高的肌动蛋白浓度下与非常高的HMM浓度下的ATP酶活性速率比较表明情况确实如此。因此,动力学和超速离心研究都表明,HMM在其与肌动蛋白和ATP相互作用的大部分循环中处于不应期。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85da/426531/48b0b8844998/pnas00129-0142-a.jpg

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