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在兔透化腰大肌中存在饱和浓度的MgAMP-PNP时横桥的特性

Characterizations of cross-bridges in the presence of saturating concentrations of MgAMP-PNP in rabbit permeabilized psoas muscle.

作者信息

Frisbie S M, Xu S, Chalovich J M, Yu L C

机构信息

National Institute of Arthritis, Musculoskeletal, and Skin Diseases, National Institutes of Health, Bethesda, Maryland 20892-7182, USA.

出版信息

Biophys J. 1998 Jun;74(6):3072-82. doi: 10.1016/S0006-3495(98)78014-2.

Abstract

Several earlier studies have led to different conclusions about the complex of myosin with MgAMP-PNP. It has been suggested that subfragment 1 of myosin (S1)-MgAMP-PNP forms an S1-MgADP-like state, an intermediate between the myosin S1-MgATP and myosin S1-MgADP states or a mixture of cross-bridge states. We suggest that the different states observed result from the failure to saturate S1 with MgAMP-PNP. At saturating MgAMP-PNP, the interaction of myosin S1 with actin is very similar to that which occurs in the presence of MgATP. 1) At 1 degrees C and 170 mM ionic strength the equatorial x-ray diffraction intensity ratio I11/I10 decreased with an increasing MgAMP-PNP concentration and leveled off by approximately 20 mM MgAMP-PNP. The resulting ratio was the same for MgATP-relaxed fibers. 2) The two dimensional x-ray diffraction patterns from MgATP-relaxed and MgAMP-PNP-relaxed bundles are similar. 3) The affinity of S1-MgAMP-PNP for the actin-tropomyosin-troponin complex in solution in the absence of free calcium is comparable with that of S1-MgATP. 4) In the presence of calcium, I11/I10 decreased toward the relaxed value with increasing MgAMP-PNP, signifying that the affinity between cross-bridge and actin is weakened by MgAMP-PNP. 5) The degree to which the equatorial intensity ratio decreases as the ionic strength increases is similar in MgAMP-PNP and MgATP. Therefore, results from both fiber and solution studies suggest that MgAMP-PNP acts as a non hydrolyzable MgATP analogue for myosin.

摘要

早期的几项研究就肌球蛋白与MgAMP - PNP的复合物得出了不同结论。有人提出,肌球蛋白亚片段1(S1)-MgAMP - PNP形成一种类似S1 - MgADP的状态,是肌球蛋白S1 - MgATP和肌球蛋白S1 - MgADP状态之间的一种中间体,或者是一种横桥状态的混合物。我们认为观察到的不同状态是由于未能用MgAMP - PNP使S1饱和所致。在MgAMP - PNP饱和时,肌球蛋白S1与肌动蛋白的相互作用与在MgATP存在时发生的相互作用非常相似。1)在1℃和170mM离子强度下,赤道X射线衍射强度比I11/I10随着MgAMP - PNP浓度的增加而降低,并在约20mM MgAMP - PNP时趋于平稳。所得比例与MgATP松弛纤维相同。2)来自MgATP松弛和MgAMP - PNP松弛束的二维X射线衍射图案相似。3)在没有游离钙的溶液中,S1 - MgAMP - PNP对肌动蛋白 - 原肌球蛋白 - 肌钙蛋白复合物的亲和力与S1 - MgATP的亲和力相当。4)在有钙存在的情况下,随着MgAMP - PNP浓度增加,I11/I10朝着松弛值降低,这表明MgAMP - PNP削弱了横桥与肌动蛋白之间的亲和力。5)在MgAMP - PNP和MgATP中,随着离子强度增加赤道强度比降低的程度相似。因此,纤维和溶液研究的结果都表明,MgAMP - PNP作为肌球蛋白的一种不可水解的MgATP类似物起作用。

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