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历经艰难险阻:昆虫飞行肌和心肌的双重调控比较。

Through thick and thin: dual regulation of insect flight muscle and cardiac muscle compared.

机构信息

Department of Biology, University of York, York, YO10 5DD, UK.

The Wohl Institute, King's College London, 5 Cutcombe Road, London, SE5 9RT, UK.

出版信息

J Muscle Res Cell Motil. 2019 Jun;40(2):99-110. doi: 10.1007/s10974-019-09536-8. Epub 2019 Jul 10.

Abstract

Both insect flight muscle and cardiac muscle contract rhythmically, but the way in which repetitive contractions are controlled is different in the two types of muscle. We have compared the flight muscle of the water bug, Lethocerus, with cardiac muscle. Both have relatively high resting elasticity and are activated by an increase in sarcomere length or a quick stretch. The larger response of flight muscle is attributed to the highly ordered lattice of thick and thin filaments and to an isoform of troponin C that has no exchangeable Ca-binding site. The Ca sensitivity of cardiac muscle and flight muscle can be manipulated so that cardiac muscle responds to Ca like flight muscle, and flight muscle responds like cardiac muscle, showing the malleability of regulation. The interactions of the subunits in flight muscle troponin are described; a model of the complex, using the structure of cardiac troponin as a template, shows an overall similarity of cardiac and flight muscle troponin complexes. The dual regulation by thick and thin filaments in skeletal and cardiac muscle is thought to operate in flight muscle. The structure of inhibited myosin heads folded back on the thick filament in relaxed Lethocerus fibres has not been seen in other species and may be an adaptation to the rapid contractions of flight muscle. A scheme for regulation by thick and thin filaments during oscillatory contraction is described. Cardiac and flight muscle have much in common, but the differing mechanical requirements mean that regulation by both thick and thin filaments is adapted to the particular muscle.

摘要

昆虫的飞行肌和心肌都能有节奏地收缩,但重复收缩的控制方式在这两种肌肉中是不同的。我们比较了水黾的飞行肌和心肌。两者都具有相对较高的静止弹性,通过增加肌节长度或快速拉伸来激活。飞行肌的较大反应归因于厚和薄丝的高度有序晶格,以及一种没有可交换 Ca 结合位点的肌钙蛋白 C 同工型。心肌和飞行肌的 Ca 敏感性可以被操纵,使得心肌对 Ca 的反应类似于飞行肌,而飞行肌的反应类似于心肌,这表明调节的灵活性。描述了飞行肌肌钙蛋白亚基的相互作用;使用心肌肌钙蛋白的结构作为模板的复合物模型显示了心肌和飞行肌肌钙蛋白复合物的总体相似性。厚和薄丝在骨骼肌和心肌中的双重调节被认为在飞行肌中起作用。在放松的水黾纤维中,抑制的肌球蛋白头部折叠在粗丝上的结构在其他物种中尚未见过,可能是对飞行肌快速收缩的适应。描述了在振荡收缩过程中通过厚和薄丝进行调节的方案。心肌和飞行肌有很多共同点,但不同的机械要求意味着厚和薄丝的调节都适应于特定的肌肉。

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