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晶格间距变化对兔腰大肌纤维横桥动力学的影响。

The effect of lattice spacing change on cross-bridge kinetics in rabbit psoas fibers.

作者信息

Zhao Y, Kawai M, Wray J

机构信息

Department of Anatomy, University of Iowa, Iowa City 52242.

出版信息

Adv Exp Med Biol. 1993;332:581-92. doi: 10.1007/978-1-4615-2872-2_52.

Abstract

The effect of compression on the elementary steps of the cross-bridge cycle was investigated with the sinusoidal analysis technique and ATP hydrolysis rate measurement. The lattice spacing of rabbit psoas muscle fibers was osmotically compressed with a macromolecule, dextran T-500 (0-16%). The effects of MgATP, MgADP, Pi on exponential processes (B), (C), (D), and isometric tension were studied at different dextran concentrations. The experiments were performed at the saturating Ca concentration (pCa 4.5-4.8), 200 mM ionic strength, pH 7.0, and 20 degrees C. Our results show that the fiber width decreased linearly with an increase in the dextran concentration, and the width measurement was perfectly correlated with the lattice spacing measurement using equatorial x-ray diffraction studies. We find that the nucleotide binding steps, the ATP-isomerization step, and the cross-bridge detachment step were minimally affected by the compression. Our results indicate that 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. We also found that the rate constant of the power stroke step (k4) decreases with higher compression (> 6.3% dextran), presumably because of increased difficulty in performing the power stroke reaction. Our results further show that the association constant (K5) of phosphate to cross-bridges is not changed with compression. The ATP hydrolysis rate declined almost linearly with an increase in the dextran concentration. This observation indicates that the rate limiting step is also affected by the lattice spacing change so that the associated rate constant (k6) becomes progressively less with compression.

摘要

采用正弦分析技术和ATP水解速率测量方法,研究了压缩对横桥循环基本步骤的影响。用大分子葡聚糖T - 500(0 - 16%)对兔腰大肌纤维的晶格间距进行渗透压缩。在不同葡聚糖浓度下,研究了MgATP、MgADP、Pi对指数过程(B)、(C)、(D)和等长张力的影响。实验在饱和钙浓度(pCa 4.5 - 4.8)、200 mM离子强度、pH 7.0和20℃条件下进行。我们的结果表明,纤维宽度随葡聚糖浓度的增加呈线性下降,并且宽度测量与使用赤道X射线衍射研究的晶格间距测量完全相关。我们发现,核苷酸结合步骤、ATP异构化步骤和横桥脱离步骤受压缩的影响最小。我们的结果表明,反向动力冲程步骤的速率常数(k - 4)在轻度压缩(0 - 6.3%葡聚糖)时降低,这可能是由于附着的横桥在AM*DP状态下的稳定。我们还发现,动力冲程步骤的速率常数(k4)在较高压缩(> 6.3%葡聚糖)时降低,这可能是由于进行动力冲程反应的难度增加。我们的结果进一步表明,磷酸盐与横桥的结合常数(K5)不会随压缩而改变。ATP水解速率几乎随葡聚糖浓度的增加呈线性下降。这一观察结果表明,限速步骤也受晶格间距变化的影响,因此相关的速率常数(k6)会随着压缩而逐渐减小。

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