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Genetics of the Drosophila flight muscle myofibril: a window into the biology of complex systems.

机译:果蝇飞行肌肌原纤维的遗传学:进入复杂系统生物学的窗口。

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摘要

This essay reviews the long tradition of experimental genetics of the Drosophila indirect flight muscles (IFM). It discusses how genetics can operate in tandem with multidisciplinary approaches to provide a description, in molecular terms, of the functional properties of the muscle myofibril. In particular, studies at the interface of genetics and proteomics address protein function at the cellular scale and offer an outstanding platform with which to elucidate how the myofibril works. Two generalizations can be enunciated from the studies reviewed. First, the study of mutant IFM proteomes provides insight into how proteins are functionally organized in the myofibril. Second, IFM mutants can give rise to structural and contractile defects that are unrelated, a reflection of the dual function that myofibrillar proteins play as fundamental components of the sarcomeric framework and biochemical "parts" of the contractile "engine".
机译:本文回顾了果蝇间接飞行肌肉(IFM)的实验遗传学的悠久传统。它讨论了遗传学如何与多学科方法协同作用,以分子方式描述了肌肉肌原纤维的功能特性。特别是,在遗传学和蛋白质组学的界面上进行的研究解决了细胞规模的蛋白质功能,并提供了一个出色的平台来阐明肌原纤维的工作原理。可以从所审查的研究中阐明两个概括。首先,对突变型IFM蛋白质组的研究提供了有关肌原纤维中蛋白质功能性组织方式的见解。其次,IFM突变体会引起不相关的结构和收缩缺陷,这反映了肌原纤维蛋白作为肌节构架和收缩“引擎”的生化“部分”的基本组成部分发挥的双重功能。

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