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利用光镊技术比较两种心肌肌球蛋白同工型之间的单位位移和力:心脏适应的分子基础

Comparison of unitary displacements and forces between 2 cardiac myosin isoforms by the optical trap technique: molecular basis for cardiac adaptation.

作者信息

Sugiura S, Kobayakawa N, Fujita H, Yamashita H, Momomura S, Chaen S, Omata M, Sugi H

机构信息

The Second Department of Internal Medicine, School of Medicine, University of Tokyo, Japan.

出版信息

Circ Res. 1998 Jun 1;82(10):1029-34. doi: 10.1161/01.res.82.10.1029.

DOI:10.1161/01.res.82.10.1029
PMID:9622155
Abstract

To provide information on the mechanism of cardiac adaptation at the molecular level, we compared the unitary displacements and forces between the 2 rat cardiac myosin isoforms, V1 and V3. A fluorescently labeled actin filament, with a polystyrene bead attached, was caught by an optical trap and brought close to a glass surface sparsely coated with either of the 2 isoforms, so that the actin-myosin interaction took place in the presence of a low concentration of ATP (0.5 micromol/L). Discrete displacement events were recorded with a low trap stiffness (0.03 to 0.06 pN/nm). Frequency distribution of the amplitude of the displacements consisted of 2 gaussian curves with peaks at 9 to 10 and 18 to 20 nm for both V1 and V3, suggesting that 9 to 10 nm is the unitary displacement for both isoforms. The duration of the displacement events was longer for V3 than for V1. On the other hand, discrete force transients were recorded with a high trap stiffness (2.1 pN/nm), and their amplitude showed a broad distribution with mean values between 1 and 2 pN for V1 and V3. The durations of the force transients were also longer for V3 than for V1. These results indicate that both the unitary displacements and forces are similar in amplitude but different in duration between the 2 cardiac myosin isoforms, being consistent with the reports that the tension cost is higher in muscles consisting mainly of V1 than those consisting mainly of V3.

摘要

为了在分子水平上提供心脏适应性机制的相关信息,我们比较了两种大鼠心肌肌球蛋白亚型V1和V3之间的单位位移和力。一条附着有聚苯乙烯珠的荧光标记肌动蛋白丝被光镊捕获,并靠近稀疏涂有这两种亚型之一的玻璃表面,从而使肌动蛋白 - 肌球蛋白相互作用在低浓度ATP(0.5微摩尔/升)存在的情况下发生。使用低陷阱刚度(0.03至0.06皮牛/纳米)记录离散的位移事件。对于V1和V3,位移幅度的频率分布均由两条高斯曲线组成,峰值分别在9至10纳米和18至20纳米处,这表明9至10纳米是两种亚型的单位位移。V3的位移事件持续时间比V1长。另一方面,使用高陷阱刚度(2.1皮牛/纳米)记录离散的力瞬变,其幅度显示出广泛的分布,V1和V3的平均值在1至2皮牛之间。V3的力瞬变持续时间也比V1长。这些结果表明,两种心肌肌球蛋白亚型之间的单位位移和力在幅度上相似,但在持续时间上不同,这与主要由V1组成的肌肉比主要由V3组成的肌肉具有更高的张力消耗的报道一致。

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