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首页> 外文期刊>BMC Molecular Biology >NF-κB mediates the transcription of mouse calsarcin-1 gene, but not calsarcin-2, in C2C12 cells
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NF-κB mediates the transcription of mouse calsarcin-1 gene, but not calsarcin-2, in C2C12 cells

机译:NF-κB在C2C12细胞中介导小鼠calsarcin-1基因的转录,但不介导calsarcin-2的转录

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Background The calsarcins comprise a novel family of muscle-specific calcineurin-interaction proteins that play an important role in modulating both the function and substrate specificity of calcineurin in muscle cells. The expression of calsarcin-1 (CS-1) is restricted to slow-twitch skeletal muscle fibres, whereas that of both calsarcin-2 (CS-2) and calsarcin-3 (CS-3) is enriched in fast-twitch fibres. However, the transcriptional control of this selective expression has not been previously elucidated. Results Our real-time RT-PCR analyses suggest that the expression of CS-1 and CS-2 is increased during the myogenic differentiation of mouse C2C12 cells. Promoter deletion analysis further suggests that an NF-κB binding site within the CS-1 promoter is responsible for the up-regulation of CS-1 transcription, but no similar mechanism was evident for CS-2. These findings are further supported by the results of EMSA analysis, as well as by overexpression and inhibition experiments in which NF-κB function was blocked by treatment with its inhibitor, PDTC. In addition, the overexpression of NFATc4 induces both the CS-1 and CS-2 promoters, whereas MEF2C only activates CS-1. Conclusion Our present data suggest that NF-κB is required for the transcription of mouse CS-1 but not CS-2, and that the regulation of the calsarcins is mediated also by the NFAT and MEF2 transcription factors. These results provide new insights into the molecular mechanisms governing transcription in specific muscle fibre cells. The calsarcins may also serve as a valuable mechanistic tool to better understand the regulation of calcineurin signalling during muscle differentiation.
机译:背景钙调蛋白包含新的肌肉特异性钙调神经磷酸酶相互作用蛋白家族,其在调节钙调神经磷酸酶在肌肉细胞中的功能和底物特异性中均起重要作用。 calsarcin-1(CS-1)的表达仅限于慢肌骨骼肌纤维,而calsarcin-2(CS-2)和calsarcin-3(CS-3)的表达均富含快肌纤维。但是,该选择性表达的转录控制先前尚未阐明。结果我们的实时RT-PCR分析表明,在小鼠C2C12细胞成肌分化过程中,CS-1和CS-2的表达增加。启动子缺失分析进一步表明,CS-1启动子中的NF-κB结合位点负责CS-1转录的上调,但CS-2没有类似的机制。 EMSA分析的结果以及过表达和抑制实验进一步支持了这些发现,在该实验中,用其抑制剂PDTC阻断了NF-κB的功能。此外,NFATc4的过表达诱导CS-1和CS-2启动子,而MEF2C仅激活CS-1。结论我们目前的数据表明,NF-κB是小鼠CS-1转录所必需的,而不是CS-2的转录,并且钙蛋白酶的调节也由NFAT和MEF2转录因子介导。这些结果为控制特定肌肉纤维细胞中转录的分子机制提供了新见解。钙肌蛋白还可以用作有价值的机制工具,以更好地理解肌肉分化过程中钙调神经磷酸酶信号的调节。

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