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收缩活动诱导的细胞色素C转录激活涉及Sp1,且与C2C12肌肉细胞中的线粒体ATP合成成正比。

Contractile activity-induced transcriptional activation of cytochrome C involves Sp1 and is proportional to mitochondrial ATP synthesis in C2C12 muscle cells.

作者信息

Connor M K, Irrcher I, Hood D A

机构信息

Departments of Biology and Kinesiology and Health Science, York University, Toronto, Ontario M3J 1P3, Canada.

出版信息

J Biol Chem. 2001 May 11;276(19):15898-904. doi: 10.1074/jbc.M100272200. Epub 2001 Feb 20.

Abstract

Contractile activity induces adaptations in the expression of genes encoding skeletal muscle mitochondrial proteins; however, the putative signals responsible for these adaptations remain unknown. We used electrical stimulation (5 Hz, 65 V) of C2C12 muscle cells in culture to define some of the mechanisms involved in contractile activity-induced changes in cytochrome c gene expression. Chronic contractile activity (4 days, 3 h/day) augmented cytochrome c mRNA by 1.6-fold above control cells. This was likely mediated by increases in transcriptional activation, because cells transfected with full-length (-726 base pairs) or minimal (-66 base pairs) cytochrome c promoter/chloramphenicol acetyltransferase reporter constructs demonstrated contractile activity-induced 1.5-1.7-fold increases in the absence of contractile activity-induced increases in mRNA stability. Transcriptional activation of the -726 promoter was abolished when muscle contraction was inhibited at various subcellular locations by pretreatment with either the Na(+) channel blocker tetrodotoxin, the intracellular Ca(2+) chelator 1,2-bis(o-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid tetra(acetoxymethyl) ester, or the myosin ATPase inhibitor 2,3-butanedione monoxime. It was further reduced in unstimulated cells when mitochondrial ATP synthesis was impaired using the uncoupler 2,4-dinitrophenol. Because the contractile activity-induced response was evident within the minimal promoter, electromobility shift assays performed within the first intron (+75 to +104 base pairs) containing Sp1 sites revealed an elevated DNA binding in response to contractile activity. This was paralleled by increases in Sp1 protein levels. Sp1 overexpression studies also led to increases in cytochrome c transactivation and mRNA levels. These data suggest that variations in the rate of mitochondrial ATP synthesis are important in determining cytochrome c gene expression in muscle cells and that this is mediated, in part, by Sp1-induced increases in cytochrome c transcription.

摘要

收缩活动可诱导编码骨骼肌线粒体蛋白的基因表达发生适应性变化;然而,负责这些适应性变化的假定信号仍不清楚。我们利用体外培养的C2C12肌细胞进行电刺激(5Hz,65V),以确定收缩活动诱导细胞色素c基因表达变化所涉及的一些机制。慢性收缩活动(4天,每天3小时)使细胞色素c mRNA比对照细胞增加了1.6倍。这可能是由转录激活增加介导的,因为用全长(-726碱基对)或最小(-66碱基对)细胞色素c启动子/氯霉素乙酰转移酶报告构建体转染的细胞,在不存在收缩活动诱导的mRNA稳定性增加的情况下,显示出收缩活动诱导的1.5 - 1.7倍增加。当用钠通道阻滞剂河豚毒素、细胞内钙螯合剂1,2 - 双(邻氨基苯氧基)乙烷 - N,N,N',N' - 四乙酸四(乙酰氧甲基)酯或肌球蛋白ATP酶抑制剂2,3 - 丁二酮单肟在不同亚细胞位置预处理抑制肌肉收缩时,-726启动子的转录激活被消除。当使用解偶联剂2,4 - 二硝基苯酚损害线粒体ATP合成时,未刺激细胞中的转录激活进一步降低。因为收缩活动诱导的反应在最小启动子内很明显,在含有Sp1位点的第一个内含子(+75至+104碱基对)内进行的电泳迁移率变动分析显示,响应收缩活动DNA结合增加。这与Sp1蛋白水平的增加平行。Sp1过表达研究也导致细胞色素c反式激活和mRNA水平增加。这些数据表明,线粒体ATP合成速率的变化在决定肌肉细胞中细胞色素c基因表达方面很重要,并且这部分是由Sp1诱导的细胞色素c转录增加介导的。

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