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肌浆网蛋白磷酸受纳蛋白基因的转录调控以及肌浆网钙ATP酶2基因的翻译调控,使得这两种肌浆网蛋白在骨骼肌表型转换过程中产生协同表达。

Transcriptional regulation of phospholamban gene and translational regulation of SERCA2 gene produces coordinate expression of these two sarcoplasmic reticulum proteins during skeletal muscle phenotype switching.

作者信息

Hu P, Yin C, Zhang K M, Wright L D, Nixon T E, Wechsler A S, Spratt J A, Briggs F N

机构信息

Department of Physiology, Medical College of Virginia/Virginia Commonwealth University, Richmond 23298, USA.

出版信息

J Biol Chem. 1995 May 12;270(19):11619-22. doi: 10.1074/jbc.270.19.11619.

Abstract

Chronic 1 Hz stimulation of the canine latissimus dorsi muscle produced a time-dependent switch from the fast-twitch to the slow-twitch phenotype. This included changes in the proteins of the sarcoplasmic reticulum. After 3 days of muscle stimulation, there was down-regulation of fast-twitch Ca-ATPase (SERCA1a) mRNA and induction of slow-twitch Ca-ATPase (SERCA2a) mRNA; most changes in both mRNAs were nearly complete after 14 days of stimulation. Although the induction of phospholamban mRNA began after 3 days of muscle stimulation, its up-regulation was not completed until the muscle had been stimulated for 42 days. The time course of expression of SERCA2a protein was very different from that of SERCA2a mRNA, suggesting that SERCA2 gene expression is regulated at the translational as well as the transcriptional level. The time course of expression of phospholamban protein closely followed that of phospholamban mRNA, suggesting that this gene is under transcriptional control. Thus coordinated expression of SERCA2a and phospholamban proteins is achieved via translational control of the SERCA2 gene and transcriptional control of the phospholamban gene.

摘要

对犬背阔肌进行慢性1赫兹刺激会导致其从快肌纤维表型向慢肌纤维表型发生时间依赖性转变。这包括肌浆网蛋白质的变化。肌肉刺激3天后,快肌型钙-ATP酶(SERCA1a)mRNA下调,慢肌型钙-ATP酶(SERCA2a)mRNA诱导产生;两种mRNA的大多数变化在刺激14天后几乎完成。尽管受磷蛋白mRNA的诱导在肌肉刺激3天后开始,但其上调直到肌肉被刺激42天才完成。SERCA2a蛋白的表达时间进程与SERCA2a mRNA非常不同,这表明SERCA2基因表达在转录水平和翻译水平均受到调控。受磷蛋白的表达时间进程与受磷蛋白mRNA密切相关,这表明该基因受转录控制。因此,SERCA2a和受磷蛋白的协同表达是通过SERCA2基因的翻译控制和受磷蛋白基因的转录控制来实现的。

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