Goldstein M A, Schroeter J P, Michael L H
Department of Medicine, Baylor College of Medicine, Houston, Texas 77030.
FASEB J. 1991 May;5(8):2167-74. doi: 10.1096/fasebj.5.8.2022313.
In striated muscle the mechanism of contraction involves the cooperative movement of contractile and elastic components. This review emphasizes a structural approach that describes the cellular and extracellular components with known anatomical, biochemical, and physical properties that make them candidates for these contractile and elastic components. Classical models of contractile and elastic elements and their underlying assumptions are presented. Mechanical properties of cardiac and skeletal muscle are compared and contrasted and then related to ultrastructure. Information from these approaches leads to the conclusion that the Z band is essential for muscle contraction. Our review of Z band structure shows the Z band at the interface where extracellular components meet the cell surface. The Z band is also the interface from cell surface to myofibril, from extra-myofibrillar to myofibril, and finally from sarcomere to sarcomere. Our studies of Z band in defined physiologic states show that this lattice is an integral part of the contractile elements and can function as an elastic component. The Z band is a complex dynamic lattice uniquely suited to play several roles in muscle contraction.
在横纹肌中,收缩机制涉及收缩成分和弹性成分的协同运动。本综述强调一种结构方法,该方法描述了具有已知解剖学、生物化学和物理特性的细胞和细胞外成分,这些特性使它们成为这些收缩和弹性成分的候选者。文中介绍了收缩和弹性元件的经典模型及其基本假设。对心肌和骨骼肌的力学特性进行了比较和对比,然后将其与超微结构联系起来。这些方法得出的信息表明,Z带对于肌肉收缩至关重要。我们对Z带结构的综述表明,Z带位于细胞外成分与细胞表面相遇的界面处。Z带也是从细胞表面到肌原纤维、从肌原纤维外到肌原纤维、最后从肌节到肌节的界面。我们在特定生理状态下对Z带的研究表明,这种晶格是收缩元件的一个组成部分,并且可以作为弹性成分发挥作用。Z带是一种复杂的动态晶格,特别适合在肌肉收缩中发挥多种作用。