首页> 外文OA文献 >The effect of the lattice spacing change on cross-bridge kinetics in chemically skinned rabbit psoas muscle fibers. II. Elementary steps affected by the spacing change.
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The effect of the lattice spacing change on cross-bridge kinetics in chemically skinned rabbit psoas muscle fibers. II. Elementary steps affected by the spacing change.

机译:晶格间距变化对化学上皮的兔大肌肌肉纤维中跨桥动力学的影响。二。基本步骤受间距变化的影响。

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摘要

The actin-myosin lattice spacing of rabbit psoas fibers was osmotically compressed with a dextran T-500, and its effect on the elementary steps of the cross-bridge cycle was investigated. Experiments were performed at the saturating Ca (pCa 4.5-4.9), 200 mM ionic strength, pH 7.0, and at 20 degrees C, and the results were analyzed by the following cross-bridge scheme: [formula: see text] where A = actin, M = myosin head, S = MgATP, D = MgADP, and P = Pi = phosphate. From MgATP and MgADP studies on exponential process (C) and (D), the association constants of cross-bridges to MgADP (K0), MgATP (K1a), the rate constants of the isomerization of the AM S state (k1b and k-1b), and the rate constants of the cross-bridge detachment step (k2 and k-2) were deduced. From Pi study on process (B), the rate constants of the cross-bridge attachment (power stroke) step (k4- and k-4) and the association constant of Pi ions to cross-bridges (K5) were deduced. From ATP hydrolysis measurement, the rate constant of ADP-isomerization (rate-limiting) step (k6) was deduced. These kinetic constants were studied as functions of dextran concentrations. Our results show that nucleotide binding, the ATP-isomerization, and the cross-bridge detachment steps are minimally affected by the compression. The rate constant of the reverse power stroke step (k-4) decreases with mild compression (0-6.3% dextran), presumably because of the stabilization of the attached cross-bridges in the AM*DP state. The rate constant of the power stroke step (k4) does not change with mild compression, but it decreases with higher compression (> 6.3% dextran), presumably because of an increased difficulty in performing the power stroke. These results are consistent with the observation that isometric tension increases with a low level of compression and decreases with a high level of compression. Our results also show that the association constant K5 of Pi with cross-bridge state AM*D is not changed with compression. Our result further show that the ATP hydrolysis rate decreased with compression, and that the rate constants of the ADP-isomerization step (k6) becomes progressively less with compression. The effect of compression on the power stroke step and rate-limiting step implies that a large-scale molecular rearrangement in the myosin head takes place in these two slow reaction steps.
机译:用右旋糖酐T-500渗透压压缩兔腰肌肌动蛋白-肌球蛋白的晶格间距,并研究其对跨桥循环基本步骤的影响。在饱和Ca(pCa 4.5-4.9),离子强度200 mM,pH 7.0和20摄氏度下进行实验,并通过以下跨桥方案分析结果:[公式:参见文本]其中A =肌动蛋白,M =肌球蛋白头,S = MgATP,D = MgADP,P = Pi =磷酸盐。根据MgATP和MgADP对指数过程(C)和(D)的研究,与MgADP的跨桥缔合常数(K0),MgATP(K1a),AM S状态异构化的速率常数(k1b和k- 1b),推导出跨桥分离步骤的速率常数(k2和k-2)。通过对过程(B)的Pi研究,推导了跨桥附着(功率冲程)步骤的速率常数(k4-和k-4)以及Pi离子与跨桥的缔合常数(K5)。通过ATP水解测量,推导ADP异构化(限速)步骤(k6)的速率常数。研究了这些动力学常数作为葡聚糖浓度的函数。我们的结果表明,核苷酸结合,ATP异构化和跨桥分离步骤受压缩的影响最小。反向功率冲程步骤(k-4)的速率常数随着轻度压缩(0-6.3%右旋糖酐)而降低,这大概是由于在AM * DP状态下连接的跨桥的稳定性。动力冲程步长(k4)的速率常数不会随轻度压缩而变化,而随着较高的压缩力(> 6.3%右旋糖酐)而降低,这可能是因为执行动力冲程的难度增加了。这些结果与等轴测张力在低压缩水平下增加而在高压缩水平下减小的观察结果一致。我们的结果还表明,Pi与跨桥状态AM * D的缔合常数K5不会随压缩而变化。我们的结果进一步表明,ATP水解速率随着压缩而降低,并且ADP异构化步骤(k6)的速率常数随着压缩而逐渐减小。压缩对功率冲程步骤和速率限制步骤的影响意味着在这两个缓慢的反应步骤中,肌球蛋白头部发生了大规模的分子重排。

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  • 作者

    Zhao, Y; Kawai, M;

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  • 年度 1993
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  • 正文语种 en
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