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蜂鸟和虎皮鹦鹉的飞行肌和腿部肌肉中的肌球蛋白重链同工型。

Myosin heavy-chain isoforms in the flight and leg muscles of hummingbirds and zebra finches.

机构信息

Department of Cell and Systems Biology, University of Toronto, Toronto, Ontario, Canada; and

Department of Biological Sciences, University of Toronto, Scarborough, Toronto, Ontario, Canada.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2014 Jun 1;306(11):R845-51. doi: 10.1152/ajpregu.00041.2014. Epub 2014 Mar 26.

Abstract

Myosin heavy chain (MHC) isoform complement is intimately related to a muscle's contractile properties, yet relatively little is known about avian MHC isoforms or how they may vary with fiber type and/or the contractile properties of a muscle. The rapid shortening of muscles necessary to power flight at the high wingbeat frequencies of ruby-throated hummingbirds and zebra finches (25-60 Hz), along with the varied morphology and use of the hummingbird hindlimb, provides a unique opportunity to understand how contractile and morphological properties of avian muscle may be reflected in MHC expression. Isoforms of the hummingbird and zebra finch flight and hindlimb muscles were electrophoretically separated and compared with those of other avian species representing different contractile properties and fiber types. The flight muscles of the study species operate at drastically different contraction rates and are composed of different histochemically defined fiber types, yet each exhibited the same, single MHC isoform corresponding to the chicken adult fast isoform. Thus, despite quantitative differences in the contractile demands of flight muscles across species, this isoform appears necessary for meeting the performance demands of avian powered flight. Variation in flight muscle contractile performance across species may be due to differences in the structural composition of this conserved isoform and/or variation within other mechanically linked proteins. The leg muscles were more varied in their MHC isoform composition across both muscles and species. The disparity in hindlimb MHC expression between hummingbirds and the other species highlights previously observed differences in fiber type composition and thrust production during take-off.

摘要

肌球蛋白重链(MHC)同工型的组成与肌肉的收缩特性密切相关,但关于禽类 MHC 同工型及其如何随纤维类型和/或肌肉的收缩特性而变化的知识相对较少。鸣禽和斑胸草雀(25-60 Hz)翅膀拍打频率很高,需要肌肉快速缩短以产生飞行的动力,同时鸣禽后肢的形态和用途多种多样,这为了解禽类肌肉的收缩和形态特性如何反映在 MHC 表达上提供了独特的机会。研究物种的飞行和后肢肌肉同工型通过电泳分离,并与代表不同收缩特性和纤维类型的其他禽类物种进行比较。研究物种的飞行肌肉以截然不同的收缩速度运作,由不同组织化学定义的纤维类型组成,但每种肌肉都表现出相同的单一 MHC 同工型,对应于鸡的成体快型同工型。因此,尽管不同物种的飞行肌肉收缩需求存在定量差异,但这种同工型似乎是满足禽类动力飞行性能需求所必需的。不同物种的飞行肌肉收缩性能的变化可能是由于这种保守同工型的结构组成差异以及/或其他机械相关蛋白的变异。两种肌肉和物种的腿部肌肉在 MHC 同工型组成上的差异更大。鸣禽和其他物种在后肢 MHC 表达上的差异突出了之前观察到的在起飞过程中纤维类型组成和推力产生方面的差异。

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Myosin heavy-chain isoforms in the flight and leg muscles of hummingbirds and zebra finches.蜂鸟和虎皮鹦鹉的飞行肌和腿部肌肉中的肌球蛋白重链同工型。
Am J Physiol Regul Integr Comp Physiol. 2014 Jun 1;306(11):R845-51. doi: 10.1152/ajpregu.00041.2014. Epub 2014 Mar 26.
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