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一种通过拉伸而非钙来调节肌肉收缩的肌钙蛋白开关。

A troponin switch that regulates muscle contraction by stretch instead of calcium.

作者信息

Agianian Bogos, Krzic Uros, Qiu Feng, Linke Wolfgang A, Leonard Kevin, Bullard Belinda

机构信息

European Molecular Biology Laboratory, Meyerhofstrasse 1, Heidelberg, Germany.

出版信息

EMBO J. 2004 Feb 25;23(4):772-9. doi: 10.1038/sj.emboj.7600097. Epub 2004 Feb 12.

Abstract

The flight muscles of many insects have a form of regulation enabling them to contract at high frequencies. The muscles are activated by periodic stretches at low Ca2+ levels. The same muscles also give isometric contractions in response to higher Ca2+. We show that the two activities are controlled by different isoforms of TnC (F1 and F2) within single myofibrils. F1 binds one Ca2+ with high affinity in the C-terminal domain and F2 binds one Ca2+ in the C-terminal domain and one exchangeable Ca2+ in the N-terminal domain. We have characterised the isoforms and determined their effect on the development of stretch-activated and Ca2+-activated tension by replacing endogenous TnC in Lethocerus flight muscle fibres with recombinant isoforms. Fibres with F1 gave stretch-activated tension and minimal isometric tension; those with F2 gave Ca2+-dependent isometric tension and minimal stretch-activated tension. Regulation by a TnC responding to stretch rather than Ca2+ is unprecedented and has resulted in the ability of insect flight muscle to perform oscillatory work at low Ca2+ concentrations, a property to which a large number of flying insects owe their evolutionary success.

摘要

许多昆虫的飞行肌肉具有一种调节形式,使其能够在高频下收缩。这些肌肉在低钙离子水平时通过周期性拉伸被激活。同样的肌肉在较高钙离子浓度下也会产生等长收缩。我们发现,这两种活动由单个肌原纤维内不同的肌钙蛋白C(TnC)亚型(F1和F2)控制。F1在C末端结构域以高亲和力结合一个钙离子,F2在C末端结构域结合一个钙离子,并在N末端结构域结合一个可交换钙离子。我们对这些亚型进行了表征,并通过用重组亚型替换大仰蝽飞行肌肉纤维中的内源性TnC,确定了它们对拉伸激活张力和钙离子激活张力发展的影响。含有F1的纤维产生拉伸激活张力和最小的等长张力;含有F2的纤维产生钙离子依赖性等长张力和最小的拉伸激活张力。由对拉伸而非钙离子作出反应的TnC进行调节是前所未有的,这使得昆虫飞行肌肉能够在低钙离子浓度下进行振荡工作,大量飞行昆虫的进化成功归因于此特性。

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