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首页> 外文期刊>The Journal of Experimental Biology >Identification of myosin light chains in Rana pipiens skeletal muscle and their expression patterns along single fibres
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Identification of myosin light chains in Rana pipiens skeletal muscle and their expression patterns along single fibres

机译:皮林蛙骨骼肌肌球蛋白轻链的鉴定及其沿单纤维的表达模式

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摘要

Isoforms of myosin heavy chain (MHC) and myosin light chain (MLC) influence contractile kinetics of skeletal muscle. We previously showed that the four major skeletal muscle fibre types in Rana pipiens (type 1, type 2, type 3 and tonic; amphibian nomenclature) contain four unique MHC isoforms. In the present study we defined the MLCs expressed in each of these R. pipiens fibre types. The MLC composition of single MHC-typed fibres was determined from western blots using a panel of monoclonal MLC antibodies. A total of seven MLCs were identified, including four types of MLC1, two of MLC2 and a single MLC3. Twitch fibre types (types 1, 2 and 3) expressed MLC1(f) and MLC2(f), while tonic fibres contained a unique set of isoforms, MLC1(Ta), MLC1(Tb) and MLC2(T). MLC3 was expressed primarily in type 1, type 1-2 and type 2 fibres. Surprisingly, some frogs displayed a striking pattern of MLC expression where a unique isoform of MLC1 (MLC1(x)) was coexpressed along with the normal isoform(s) in all fibre types. MLC1(x) was either expressed in all fibres of a given frog or was completely absent. The intraspecific polymorphism in MLC1 expression is likely to have a genetic basis, but is unlikely to be caused by allelic variation. The ratio of MLC3/MLCI increased in direct proportion to the percentage of type 1 MHC, but was only weakly correlated. The variability in MLC3/MLC1 within a fibre type was extremely large. Both the MHC isoform and MLC3/MLC1 ratio varied significantly between 1 mm segments along the length of fibres. For all segments combined, MLC3/MLC1 increased with the percentage of type 1 MHC, but the correlation between segments was weaker than between fibres.
机译:肌球蛋白重链(MHC)和肌球蛋白轻链(MLC)的同工型影响骨骼肌的收缩动力学。我们以前曾证明,斑节蛙(Rana pipiens)中的四种主要骨骼肌纤维类型(类型1,类型2,类型3和补品;两栖动物命名法)包含四种独特的MHC亚型。在当前的研究中,我们定义了在这些pipiens每种纤维类型中表达的MLC。使用一组单克隆MLC抗体从Western印迹确定单个MHC型纤维的MLC组成。总共确定了七个MLC,包括四种类型的MLC1,两种MLC2和一个MLC3。抽动纤维类型(1、2和3型)表示MLC1(f)和MLC2(f),而补品纤维则包含一组独特的同工型,即MLC1(Ta),MLC1(Tb)和MLC2(T)。 MLC3主要在1型,1-2型和2型纤维中表达。出乎意料的是,一些青蛙表现出惊人的MLC表达模式,其中在所有纤维类型中,MLC1的独特同工型(MLC1(x))与正常同工型共表达。 MLC1(x)在给定青蛙的所有纤维中表达或完全不表达。 MLC1表达中的种内多态性可能具有遗传基础,但不太可能由等位基因变异引起。 MLC3 / MLCI的比例与1型MHC的百分比成正比增加,但相关性很弱。光纤类型中MLC3 / MLC1的变异性非常大。 MHC同工型和MLC3 / MLC1比率均沿纤维长度在1 mm片段之间变化显着。对于所有组合的片段,MLC3 / MLC1随1型MHC的百分比而增加,但片段之间的相关性弱于纤维之间的相关性。

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