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单根哺乳动物骨骼肌纤维中肌球蛋白轻链亚型的表达:物种差异

Myosin light chain isoform expression among single mammalian skeletal muscle fibers: species variations.

作者信息

Bicer Sabahattin, Reiser Peter J

机构信息

Department of Oral Biology, The Ohio State University, Columbus, USA.

出版信息

J Muscle Res Cell Motil. 2004;25(8):623-33. doi: 10.1007/s10974-004-5070-9. Epub 2005 Feb 24.

Abstract

Extensive heterogeneity in myosin heavy chain and light chain (MLC) isoform expression in skeletal muscle has been well documented in several mammalian species. The initial objective of this study was to determine the extent of heterogeneity in myosin isoform expression among single fibers in limb muscles of dogs, a species for which relatively little has been reported. Fibers were isolated from muscles that have different functions with respect to limb extension and limb flexion and were analyzed on SDS gels, with respect to myosin isoform composition. The results of this part of the study indicate that there are at least four distinct fiber types in dog limb and diaphragm muscles, on the basis of MLC isoform expression: conventional fast (expressing fast-type isoforms of MLC1 (MLC1F) and MLC2 (MLC2F), plus MLC3), conventional slow (expressing slow-type MLC1 (MLC1S) and MLC2 (MLC2S)), hybrid (expressing MLC1S, MLC1F, MLC2S, MLC2F and MLC3) and a second slow fiber type, designated as S1F. S1F fibers express MLC1F, along with MLC1S and MLC2S and relatively low levels of MLC3. The fraction of slow fibers that are S1F fibers varies among dog limb muscles, being greater in limb extensors than flexors. Furthermore, the mean level of MLC1F in S1F fibers is greater in extensors than flexors (mean levels range from approximately 3% to 50% of total MLC1). The study was, therefore, extended to include six additional species, spanning a broad range in adult body size to more thoroughly characterize heterogeneity in MLC isoform expression among mammals. The results indicate that there are distinct patterns in MLC isoform expression among fast and slow fibers among different species. Specifically, large-size mammals have two distinct types of slow fibers, based upon MLC isoform composition (conventional and S1F fibers), whereas small mammals exhibit variations in MLC isoforms between different types of fast fibers, including a fast fiber type that expresses MLC1S (designated as F1S fibers). S1F fibers were absent in rodent muscles and F1S fibers were not found in large mammals. We conclude that extensive variation exists in MLC isoform expression in mammalian skeletal muscle fibers, yet there are distinct patterns among different species and among muscles within an individual species.

摘要

在几种哺乳动物中,骨骼肌肌球蛋白重链和轻链(MLC)同工型表达存在广泛的异质性,这已得到充分证明。本研究的最初目的是确定犬类肢体肌肉中单根纤维之间肌球蛋白同工型表达的异质性程度,对于该物种的相关报道相对较少。从具有不同肢体伸展和肢体屈曲功能的肌肉中分离出纤维,并在SDS凝胶上分析其肌球蛋白同工型组成。该研究这一部分的结果表明,基于MLC同工型表达,犬类肢体和膈肌肌肉中至少存在四种不同的纤维类型:传统快肌纤维(表达MLC1(MLC1F)和MLC2(MLC2F)的快肌型同工型,加上MLC3)、传统慢肌纤维(表达慢肌型MLC1(MLC1S)和MLC2(MLC2S))、混合型(表达MLC1S、MLC1F、MLC2S、MLC2F和MLC3)以及第二种慢肌纤维类型,称为S1F。S1F纤维表达MLC1F,以及MLC1S和MLC2S,且MLC3水平相对较低。S1F纤维在犬类肢体肌肉中的比例各不相同,在肢体伸肌中比屈肌中更高。此外,伸肌中S1F纤维的MLC1F平均水平高于屈肌(平均水平占总MLC1的约3%至50%)。因此,该研究扩展到另外六个物种,涵盖了广泛的成年体型范围,以更全面地描述哺乳动物中MLC同工型表达的异质性。结果表明,不同物种的快肌纤维和慢肌纤维之间MLC同工型表达存在明显模式。具体而言,基于MLC同工型组成,大型哺乳动物有两种不同类型的慢肌纤维(传统型和S1F纤维),而小型哺乳动物在不同类型的快肌纤维之间MLC同工型存在差异,包括一种表达MLC1S的快肌纤维类型(称为F1S纤维)。啮齿动物肌肉中不存在S1F纤维,大型哺乳动物中未发现F1S纤维。我们得出结论,哺乳动物骨骼肌纤维中MLC同工型表达存在广泛差异,但不同物种之间以及单个物种内的肌肉之间存在明显模式。

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