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长期培养过程中,肌纤维长度和胰岛素对分离的成熟肌纤维中肌肉特异性mRNA含量的差异影响。

Differential effects of muscle fibre length and insulin on muscle-specific mRNA content in isolated mature muscle fibres during long-term culture.

作者信息

Jaspers R T, Feenstra H M, van Beek-Harmsen B J, Huijing P A, van der Laarse W J

机构信息

Institute for Fundamental and Clinical Human Movement Sciences, Vrije Universiteit, Amsterdam, The Netherlands.

出版信息

Cell Tissue Res. 2006 Dec;326(3):795-808. doi: 10.1007/s00441-006-0227-z. Epub 2006 Jul 18.

Abstract

The aims of this study were (1) to determine the relationship between muscle fibre cross-sectional area and cytoplasmic density of myonuclei in high- and low-oxidative Xenopus muscle fibres and (2) to test whether insulin and long-term high fibre length caused an increase in the number of myonuclei and in the expression of alpha-skeletal actin and of myogenic regulatory factors (myogenin and MyoD) in these muscle fibres. In high- and low-oxidative muscle fibres from freshly frozen iliofibularis muscles, the number of myonuclei per millimetre fibre length was proportional to muscle fibre cross-sectional area. The in vivo myonuclear density thus seemed to be strictly regulated, suggesting that the induction of hypertrophy required the activation of satellite cells. The effects of muscle fibre length and insulin on myonuclear density and myonuclear mRNA content were investigated on high-oxidative single muscle fibres cultured for 4-5 days. Muscle fibres were kept at a low length (15% below passive slack length) in culture medium with a high insulin concentration (6 nmol/l: "high insulin medium") or without insulin, and at a high length (~5% above passive slack length) in high insulin medium. High fibre length and high insulin medium did not change the myonuclear density of isolated muscle fibres during culture. High insulin increased the myonuclear alpha-skeletal actin mRNA content, whereas fibre length had no effect on alpha-skeletal actin mRNA content. After culture at high fibre length in high insulin medium, the myonuclear myogenin mRNA content was 2.5-fold higher than that of fibres cultured at low length in high insulin medium or in medium without insulin. Myonuclear MyoD mRNA content was not affected by fibre length or insulin. These in vitro experiments indicate that high muscle fibre length and insulin enhance muscle gene expression but that other critical factors are required to induce adaptation of muscle fibre size and performance.

摘要

本研究的目的是

(1)确定高氧化型和低氧化型非洲爪蟾肌纤维中肌纤维横截面积与肌细胞核细胞质密度之间的关系;(2)测试胰岛素和长期高纤维长度是否会导致这些肌纤维中肌细胞核数量增加,以及α-骨骼肌动蛋白和生肌调节因子(肌细胞生成素和MyoD)的表达增加。在新鲜冷冻的髂腓肌的高氧化型和低氧化型肌纤维中,每毫米纤维长度的肌细胞核数量与肌纤维横截面积成正比。因此,体内肌细胞核密度似乎受到严格调节,这表明肥大的诱导需要卫星细胞的激活。在培养4 - 5天的高氧化型单根肌纤维上,研究了肌纤维长度和胰岛素对肌细胞核密度和肌细胞核mRNA含量的影响。肌纤维在高胰岛素浓度(约6 nmol/l:“高胰岛素培养基”)或无胰岛素的培养基中保持低长度(比被动松弛长度低约15%),并在高胰岛素培养基中保持高长度(比被动松弛长度高约5%)。在培养过程中,高纤维长度和高胰岛素培养基并未改变分离肌纤维的肌细胞核密度。高胰岛素增加了肌细胞核α-骨骼肌动蛋白mRNA含量,而纤维长度对α-骨骼肌动蛋白mRNA含量没有影响。在高胰岛素培养基中高纤维长度培养后,肌细胞核肌细胞生成素mRNA含量比在高胰岛素培养基或无胰岛素培养基中低长度培养的纤维高2.5倍。肌细胞核MyoD mRNA含量不受纤维长度或胰岛素的影响。这些体外实验表明,高肌纤维长度和胰岛素可增强肌肉基因表达,但还需要其他关键因素来诱导肌纤维大小和性能的适应。

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