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How to build a myofibril

机译:如何建立肌原纤维

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摘要

Building a myofibril from its component proteins requires the interactions of many different proteins in a process whose details are not understood. Several models have been proposed to provide a framework for understanding the increasing data on new myofibrillar proteins and their localizations during muscle development. In this article we discuss four current models that seek to explain how the assembly occurs in vertebrate cross-striated muscles. The models hypothesize: (a) stress fiber-like structures as templates for the assembly of myofibrils, (b) assembly in which the actin filaments and Z-bands form subunits independently from A-band subunits, with the two subsequently joined together to form a myofibril, (c) premyofibrils as precursors of myofibrils, or (d) assembly occurring without any intermediary structures. The premyofibril model, proposed by the authors, is discussed in more detail as it could explain myofibrillogenesis under a variety of different conditions: in ovo, in explants, and in tissue culture studies on cardiac and skeletal muscles.
机译:由其组成蛋白构建肌原纤维需要在过程中了解许多不同蛋白的相互作用,但其细节尚不清楚。已经提出了几种模型来提供一个框架,以理解新的肌原纤维蛋白及其在肌肉发育过程中的定位的不断增加的数据。在本文中,我们讨论了四个当前的模型,这些模型试图解释在脊椎动物的横纹肌中组装是如何发生的。该模型假设:(a)应力纤维状结构作为肌原纤维组装的模板,(b)肌动蛋白丝和Z波段独立于A波段亚单位形成亚单位的装配,随后将两者结合在一起形成肌原纤维,(c)肌原纤维前体作为肌原纤维的前体,或(d)组装时没有任何中间结构。由作者提出的前肌原纤维模型被更详细地讨论,因为它可以解释在多种不同条件下的肌原纤维形成:卵内,外植体以及对心脏和骨骼肌的组织培养研究。

著录项

  • 来源
    《Journal of Muscle Research and Cell Motility》 |2005年第8期|343-354|共12页
  • 作者单位

    Department of Cell and Developmental Biology University of Pennsylvania School of Medicine;

    Department of Cell and Developmental Biology University of Pennsylvania School of Medicine;

    Department of Cell and Developmental Biology University of Pennsylvania School of Medicine;

    Department of Cell and Developmental Biology University of Pennsylvania School of Medicine;

    Department of Cell and Developmental Biology University of Pennsylvania School of Medicine;

    Department of Cell and Developmental Biology University of Pennsylvania School of Medicine;

    Department of Cell and Developmental Biology University of Pennsylvania School of Medicine;

    Department of Cell and Developmental Biology University of Pennsylvania School of Medicine;

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