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非哺乳类脊椎动物收缩最快的肌肉仅表达一种兰尼碱受体同工型。

The fastest contracting muscles of nonmammalian vertebrates express only one isoform of the ryanodine receptor.

作者信息

O'Brien J, Meissner G, Block B A

机构信息

Department of Organismal Biology and Anatomy, University of Chicago, Illinois 60637.

出版信息

Biophys J. 1993 Dec;65(6):2418-27. doi: 10.1016/S0006-3495(93)81303-1.

Abstract

The skeletal muscles of chickens, frogs, and fish have been reported to express two isoforms (alpha and beta) of the sarcoplasmic reticulum calcium release channel (ryanodine receptor or RYR), while mammals express only one. We have studied patterns of RYR isoform expression in skeletal muscles from a variety of fish, reptiles, and birds with immunological techniques. Immunoblot analysis with a monoclonal antibody that recognizes both nonmammalian RYR isoforms and a polyclonal antibody specific to the alpha isoform show two key results: (a) two reptilian orders share with mammals the pattern of expressing only the alpha (skeletal) RYR isoform in skeletal muscle; and (b) certain functionally specialized muscles of fish and birds express only the alpha RYR isoforms. While both isoforms are expressed in the body musculature of fish and birds, the alpha isoform is expressed alone in extraocular muscles and swimbladder muscles. The appearance of the alpha RYR isoform alone in the extraocular muscles and a fast-contracting sonic muscle in fish (toadfish swimbladder muscle) provides evidence that this isoform is selectively expressed when rapid contraction is required. The functional and phylogenetic implications of expression of the alpha isoform alone are discussed in the context of the mechanism and evolution of excitation-contraction coupling.

摘要

据报道,鸡、青蛙和鱼的骨骼肌表达肌浆网钙释放通道(兰尼碱受体或RYR)的两种亚型(α和β),而哺乳动物只表达一种。我们用免疫学技术研究了多种鱼类、爬行动物和鸟类骨骼肌中RYR亚型的表达模式。用一种能识别非哺乳动物RYR两种亚型的单克隆抗体和一种对α亚型特异的多克隆抗体进行免疫印迹分析,得出两个关键结果:(a)两个爬行动物目与哺乳动物一样,在骨骼肌中只表达α(骨骼肌)RYR亚型;(b)鱼类和鸟类某些功能特化的肌肉只表达α RYR亚型。虽然两种亚型在鱼类和鸟类的身体肌肉组织中都有表达,但α亚型单独在外眼肌和鳔肌中表达。α RYR亚型单独在外眼肌和鱼类的一种快速收缩的发声肌肉(蟾鱼鳔肌)中出现,这证明当需要快速收缩时,这种亚型会被选择性表达。在兴奋 - 收缩偶联的机制和进化背景下,讨论了单独表达α亚型的功能和系统发育意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bf6/1225982/4ff729aaa792/biophysj00081-0154-a.jpg

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