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首页> 外文期刊>Briefings in Functional Genomics >Genes and networks regulating cardiac development and function in flies: genetic and functional genomic approaches
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Genes and networks regulating cardiac development and function in flies: genetic and functional genomic approaches

机译:调节果蝇心脏发育和功能的基因和网络:遗传和功能基因组学方法

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摘要

The Drosophila heart has emerged as a powerful model system for cardiovascular research. This simple organ, composed of only 104 cardiomyocytes and associated pericardiac cells, has been the focus of numerous candidate gene approaches in the last 2 decades, which have unraveled a number of transcription factors and signaling pathways involved in the regulation of early cardiac development. Importantly, these regulators seem to have largely conserved functions in mammals. Recent studies also demonstrated the usefulness of the fly circulatory system to investigate molecular mechanisms involved in the control of the establishment and maintenance of the cardiac function. In this review, we have focused on how new technological and conceptual advances in the field of functional genomics have impacted research on the cardiovascular system in Drosophila. Genome-scale genetic screens were conducted taking advantage of recently developed ribonucleic acid interference transgenic lines and molecularly defined genetic deficiencies, which have provided new insights into the genetics of both the developmental control of heart formation and cardiac function. In addition, a comprehensive picture of the transcriptional network controlling heart formation is emerging, thanks to newly developed genomic approaches which allow global and unbiased identification of the underlying components of gene regulatory circuits.
机译:果蝇心脏已成为心血管研究的强大模型系统。在过去的20年中,这种仅由104个心肌细胞和相关的心包膜细胞组成的简单器官一直是众多候选基因方法的重点,这些方法揭示了许多调控早期心脏发育的转录因子和信号传导途径。重要的是,这些调节剂似乎在哺乳动物中具有大部分保守的功能。最近的研究还证明了果蝇循环系统用于研究参与控制和建立心脏功能的分子机制的有用性。在这篇综述中,我们集中于功能基因组学领域的新技术和新概念如何影响果蝇心血管系统的研究。利用最近开发的核糖核酸干扰转基因品系和分子定义的遗传缺陷进行了基因组规模的遗传筛选,这为心脏形成和心脏功能的发育控制的遗传学提供了新见识。此外,由于新开发的基因组方法可以对基因调控电路的基本成分进行全局和无偏性的识别,因此控制心脏形成的转录网络的全面描述正在出现。

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