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不同脉冲模式的慢性刺激对大鼠肌管培养物中肌球蛋白同工型表达的影响。

Effects of chronic stimulation with different impulse patterns on the expression of myosin isoforms in rat myotube cultures.

作者信息

Naumann K, Pette D

机构信息

Fakultät für Biologie, Universität Konstanz, Germany.

出版信息

Differentiation. 1994 Feb;55(3):203-11. doi: 10.1046/j.1432-0436.1994.5530203.x.

Abstract

In order to study maturation and differentiation of aneural myotubes in vitro, long-term myotube cultures were established from hindlimb musculature of newborn rats. The developmental state of the myotubes was judged by their myosin heavy chain (HC) patterns. Newly formed myotubes only expressed the embryonic isoform, HCemb, older myotubes expressed the neonatal isoform HCneo, as well as the fast adult isoforms HCIIb and HCIId. HCIId increased continuously, reaching a relative concentration of 47% in 37-day-old cultures. The third fast isoform, HCIIa, was not detected and also the slow isoform HCI was absent. Effects of chronic (20 days) electrostimulation were studied by exposing the cultures to various stimulus patterns. Bursts of 250 ms duration at various pulse frequencies were applied at low and high burst frequencies. Although HCemb remained the predominant isoform under all conditions, different stimulus patterns induced specific changes in the patterns of fast and slow HC isoforms. Bursts of 250 ms duration at 15 Hz, 40 Hz, or 100 Hz, repeated every second or every 4 s, induced the expression of slow myosin, i.e., HCl. Bursts of 250 ms duration at 100 Hz, repeated every 100 s, enhanced the expression of HCIId, but not of HCI. Because slow myosin was induced at high burst frequency with low and high pulse rates, we suggest that burst frequency rather than pulse frequency has a specifying effect on myosin expression. Our results show that the basal program of myosin expression during myogenesis in vitro can be modulated by electrostimulation, suggesting a possible influence of neuromuscular activity on the development of adult fiber types.

摘要

为了研究体外无神经肌管的成熟和分化,从新生大鼠的后肢肌肉组织建立了长期肌管培养物。通过肌球蛋白重链(HC)模式判断肌管的发育状态。新形成的肌管仅表达胚胎异构体HCemb,较老的肌管表达新生儿异构体HCneo以及快速成人异构体HCIIb和HCIId。HCIId持续增加,在37天龄的培养物中达到相对浓度47%。未检测到第三种快速异构体HCIIa,也不存在慢速异构体HCI。通过将培养物暴露于各种刺激模式来研究慢性(20天)电刺激的影响。在低和高爆发频率下施加不同脉冲频率的250毫秒持续时间的爆发。尽管在所有条件下HCemb仍然是主要异构体,但不同的刺激模式诱导了快速和慢速HC异构体模式的特定变化。以15Hz、40Hz或100Hz的频率,每秒或每4秒重复一次的250毫秒持续时间的爆发诱导了慢速肌球蛋白的表达,即HCl。以100Hz的频率,每100秒重复一次的250毫秒持续时间的爆发增强了HCIId的表达,但没有增强HCI的表达。因为在高爆发频率下,无论低脉冲率还是高脉冲率都诱导了慢速肌球蛋白的表达,所以我们认为爆发频率而非脉冲频率对肌球蛋白表达具有特异性影响。我们的结果表明,体外肌生成过程中肌球蛋白表达的基础程序可通过电刺激进行调节,这表明神经肌肉活动可能对成年纤维类型的发育产生影响。

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