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青蛙骨骼肌中的Z/I带和A带晶格间距:收缩和渗透压的影响。

Z/I and A-band lattice spacings in frog skeletal muscle: effects of contraction and osmolarity.

作者信息

Irving T C, Li Q, Williams B A, Millman B M

机构信息

Department of Physics, University of Guelph, Ontario, Canada.

出版信息

J Muscle Res Cell Motil. 1998 Oct;19(7):811-23. doi: 10.1023/a:1005459605964.

Abstract

A-band and Z-line/I-band lattice spacings were measured by small-angle X-ray diffraction from relaxed and isometrically-contracting whole frog sartorius muscles with lattice spacings reduced or swollen by changing the osmolarity of the bathing solution. A-band spacing increased by approximately 3% upon isometric contraction at reduced lattice spacings (245-356 mOsm) and decreased by approximately 1% at swollen spacings (172 mOsm), similarly to the behaviour of skinned muscles upon changing from the relaxed state to rigor. The Z/I lattice underwent a significant lattice expansion (3-8%) upon isometric contraction at all osmolarities, in qualitative agreement (but quantitative disagreement) with results from electron microscopy on mammalian skeletal muscle. Lattice areas calculated for the Z/I and A-band lattices indicate a barrel-shaped sarcomere in the resting state, which may provide a partial explanation for how longitudinal forces produced in the A-band can produce a radial expansive force in the Z-line during contraction. The radial component of cross-bridge stiffness was calculated from the A-band data for contracting muscle, using a lattice stability model incorporating structural, osmotic and electrostatic forces. The calculations gave a radial cross-bridge stiffness during contraction of about 9 x 10(5) N m-2, and outward radial force per thick filament in normal Ringer's solution of 6 x 10(-9) N, corresponding to a radial force per cross-bridge of 10(-11) N.

摘要

通过小角X射线衍射测量了处于松弛状态和等长收缩状态的完整青蛙缝匠肌的A带和Z线/I带晶格间距,这些肌肉的晶格间距通过改变浴液的渗透压而减小或增大。在晶格间距减小(245 - 356毫渗)时,等长收缩会使A带间距增加约3%;在晶格间距增大(172毫渗)时,A带间距减小约1%,这与去皮肌肉从松弛状态转变为僵直状态时的行为相似。在所有渗透压下,等长收缩时Z/I晶格都会经历显著的晶格扩张(3 - 8%),这与哺乳动物骨骼肌电子显微镜观察结果在定性上一致(但在定量上不一致)。计算得到的Z/I和A带晶格面积表明,静息状态下的肌节呈桶状,这可能部分解释了A带中产生的纵向力在收缩过程中如何在Z线中产生径向扩张力。利用包含结构、渗透和静电力的晶格稳定性模型,根据收缩肌肉的A带数据计算了横桥刚度的径向分量。计算得出收缩过程中的径向横桥刚度约为9×10⁵ N m⁻²,在正常任氏液中每根粗肌丝的向外径向力为6×10⁻⁹ N,相当于每个横桥的径向力为10⁻¹¹ N。

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