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正常哺乳动物骨骼肌中Z带的三维结构。

Three-dimensional structure of the Z band in a normal mammalian skeletal muscle.

作者信息

Schroeter J P, Bretaudiere J P, Sass R L, Goldstein M A

机构信息

Department of Medicine, Baylor College of Medicine, Houston, Texas 77080, USA.

出版信息

J Cell Biol. 1996 May;133(3):571-83. doi: 10.1083/jcb.133.3.571.

Abstract

The three-dimensional structure of the vertebrate skeletal muscle Z band reflects its function as the muscle component essential for tension transmission between successive sarcomeres. We have investigated this structure as well as that of the nearby I band in a normal, unstimulated mammalian skeletal muscle by tomographic three-dimensional reconstruction from electron micrograph tilt series of sectioned tissue. The three-dimensional Z band structure consists of interdigitating axial filaments from opposite sarcomeres connected every 18 +/- 12 nm (mean +/- SD) to one to four cross-connecting Z-filaments are observed to meet the axial filaments in a fourfold symmetric arrangement. The substantial variation in the spacing between cross-connecting Z-filament to axial filament connection points suggests that the structure of the Z band is not determined solely by the arrangement of alpha-actinin to actin-binding sites along the axial filament. The cross-connecting filaments bind to or form a "relaxed interconnecting body" halfway between the axial filaments. This filamentous body is parallel to the Z band axial filaments and is observed to play an essential role in generating the small square lattice pattern seen in electron micrographs of unstimulated muscle cross sections. This structure is absent in cross section of the Z band from muscles fixed in rigor or in tetanus, suggesting that the Z band lattice must undergo dynamic rearrangement concomitant with crossbridge binding in the A band.

摘要

脊椎动物骨骼肌Z带的三维结构反映了其作为连续肌节之间张力传递所必需的肌肉成分的功能。我们通过对切片组织的电子显微镜倾斜系列进行断层三维重建,研究了正常、未受刺激的哺乳动物骨骼肌中Z带以及附近I带的结构。Z带的三维结构由来自相对肌节的相互交错的轴向细丝组成,这些细丝每隔18±12纳米(平均值±标准差)与一到四根交叉连接的Z细丝相连,观察到这些交叉连接的Z细丝以四重对称排列与轴向细丝相交。交叉连接的Z细丝与轴向细丝连接点之间间距的显著变化表明,Z带的结构并非仅由α-肌动蛋白沿轴向细丝与肌动蛋白结合位点的排列所决定。交叉连接的细丝在轴向细丝之间的中间位置与一个“松弛的互连体”结合或形成该互连体。这个丝状结构与Z带轴向细丝平行,并且在未受刺激的肌肉横截面电子显微镜图像中呈现的小方格晶格图案的形成中起着至关重要的作用。在处于强直收缩或破伤风状态下固定的肌肉的Z带横截面中不存在这种结构,这表明Z带晶格必须伴随着A带中的横桥结合而发生动态重排。

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本文引用的文献

1
The ultrastructure of the Z disc in skeletal muscle.
J Cell Biol. 1962 May;13(2):323-35. doi: 10.1083/jcb.13.2.323.
2
SUPRIM: easily modified image processing software.
J Struct Biol. 1996 Jan-Feb;116(1):131-7. doi: 10.1006/jsbi.1996.0021.
3
Site and mechanical conditions for failure of skeletal muscle in experimental strain injuries.
J Appl Physiol (1985). 1993 Mar;74(3):1280-6. doi: 10.1152/jappl.1993.74.3.1280.
7
A comparison of the morphology of denervated with aneurally regenerated soleus muscle of rat.
J Muscle Res Cell Motil. 1994 Jun;15(3):256-66. doi: 10.1007/BF00123478.
8
Optical reconstruction of nemaline rods.
Exp Neurol. 1980 Oct;70(1):83-97. doi: 10.1016/0014-4886(80)90007-2.
9
Computer averaging of electron micrographs of 40S ribosomal subunits.
Science. 1981 Dec 18;214(4527):1353-5. doi: 10.1126/science.7313694.
10
The Z-band lattice in a slow skeletal muscle.
J Muscle Res Cell Motil. 1982 Sep;3(3):333-48. doi: 10.1007/BF00713041.

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