RNA干扰基因沉默OctßRs基因诱导果蝇腿部肌肉结构紊乱

B. Afifi, S. Kholy, I. E. Husseiny, A. Seif
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引用次数: 1

摘要

大多数动物的肌肉系统不仅在神经系统的控制下控制内脏器官的运动,而且还负责它们的运动。许多基因参与了这个过程,包括脊椎动物的肾上腺素/去甲肾上腺素。昆虫肌肉系统被认为是研究参与这一过程的基因的有力工具。果蝇是一种很好的肌肉研究模式生物,因为它具有发达的遗传学和可用的技术来研究它的肌肉结构和生理。在本研究中,采用反遗传(RNAi)方法特异性沉默章鱼胺受体的内源性mRNA,以确定章鱼胺受体基因在维持横纹肌结构中的作用。章鱼胺受体是脊椎动物β肾上腺素能受体的对应物。结果显示,OctsRs基因沉默导致腿部肌肉的肌纤维和/或线粒体形态破坏,表明这些基因是维持正常腿部肌肉结构所必需的。目前的努力表明,果蝇是研究骨骼肌异常的一个有用的模型,骨骼肌异常可能导致人类中发现的特定肌病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RNA interference gene silencing of OctßRs genes induced disrupted Drosophila leg muscles architecture
Muscular system in most of animals is responsible for their locomotion as well as movement of internal organs under the control of nervous system. Many genes are involved in the process including adrenaline/noradrenaline in vertebrates. Insect muscular system is considered a powerful tool in studying genes involved in this process . Drosophila is an excellent model organism for muscle research due to its well-developed genetics and the availability of techniques to study its muscle structure and physiology. In the present study, reverse-genetic (RNAi) approaches were used to specifically silencing endogenous mRNA of Drosophila OctbetaRs, counterparts of beta adrenergic receptors of vertebrates to define the role of octopamine receptors genes in the maintenance of striated muscle architecture. Results revealed myofibrillar and/or mitochondrial morphologies disruption of leg muscles due to OctsRs gene silencing indicated that those genes are required in adults to maintain normal leg muscle architecture. The present effort indicated that Drosophila is a useful model for studying the abnormalities of skeletal muscles which may leads to specific myopathy found in the human population.
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