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首页> 外文期刊>Molecular and cellular neurosciences >Identification and characterization of differentially expressed genes in denervated muscle.
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Identification and characterization of differentially expressed genes in denervated muscle.

机译:鉴定和表征了失神经肌肉中差异表达的基因。

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摘要

Denervation results in a series of changes in skeletal muscle. To elucidate the molecular basis underlying these changes, it is important to identify the profile of altered gene expression in skeletal muscle following nerve injury. In the present study, we have examined the differentially expressed genes in denervated gastrocnemius muscle using RNA fingerprinting by arbitrarily primed PCR. Eight differentially expressed mRNA transcripts have been identified. A bilateral regulatory profile can be observed for the up-regulated genes in both denervated and contralateral control muscle following unilateral sciatic nerve injury. The temporal expression profiles of the denervation-regulated genes in muscle during development, together with their dependency on nerve activity, suggest potential functional roles following nerve injury in vivo. In particular, the identification of two apoptosis-related genes in denervated muscle provides molecular evidence that the apoptotic process is likely to be involved in the intricate changes that lead to muscle atrophy. Our findings not only allow the identification of novel genes, but also suggest possible functions for some known genes in muscle following nerve injury. Taken together, these findings provide important insights into our understanding of the molecular events in denervated muscle and suggest that the differentially expressed genes may play potential roles during muscle denervation and regeneration. Copyright 2000 Academic Press.
机译:去神经导致骨骼肌一系列变化。为了阐明这些变化的分子基础,重要的是确定神经损伤后骨骼肌中基因表达改变的情况。在本研究中,我们通过任意引发的PCR使用RNA指纹技术检查了去神经腓肠肌中差异表达的基因。已经鉴定出八个差异表达的mRNA转录物。在单侧坐骨神经损伤后,可以观察到神经支配和对侧对照肌肉中上调基因的双侧调节谱。受神经支配的基因在发育过程中的时间表达谱,以及它们对神经活动的依赖性,提示了体内神经损伤后的潜在功能作用。特别是,对失神经肌肉中两个与凋亡相关的基因的鉴定提供了分子证据,表明凋亡过程可能与导致肌肉萎缩的复杂变化有关。我们的发现不仅允许鉴定新基因,而且还暗示了神经损伤后肌肉中某些已知基因的可能功能。综上所述,这些发现为我们对失神经肌肉分子事件的理解提供了重要的见识,并表明差异表达的基因可能在肌肉失神经和再生过程中发挥潜在作用。版权所有2000学术出版社。

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