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Megsin Gene: Its Genomic Analysis Pathobiological Functions and Therapeutic Perspectives

机译:Megsin基因:其基因组分析病理生物学功能和治疗前景

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摘要

It is critical to uncover genes specifically expressed in individual cell types for further understanding of cell biology and pathology. In order to elucidate pathogenesis of renal disease, we performed functional quantitative analysis of the genome in human kidney cells and compared the expression levels of a variety of kidney transcripts with those in other non-kidney cells. As a result, we identified a novel human gene, megsin, which is a new serine protease inhibitor (serpin) predominantly expressed in the kidney. Megsin is up-regulated in kidney disease. Genomic analysis revealed an association of the polymorphisms of megsin gene with susceptibility and/or progression of kidney disease. Its overexpression in rodents has led to the recognition of two different kidney abnormalities. The first disorder is linked to megsin biological effect itself and the other to its conformational abnormality recently called the serpinopathy. In the latter model, the cellular and tissue damage is induced by the endoplasmic reticulum (ER) stress due to conformational disorder resulting from megsin tertiary structure. In both types, the inhibition of megsin’s activity or abnormal conformational change should open new therapeutic perspectives. The desire to prevent these abnormalities with the hope to offer new therapeutic strategies has stimulated the development of megsin inhibitors by a structure based drug design approach relying on a precisely known three dimensional megsin structure
机译:为了进一步了解细胞生物学和病理学,发现在单个细胞类型中特异性表达的基因至关重要。为了阐明肾脏疾病的发病机理,我们对人肾脏细胞中的基因组进行了功能定量分析,并将各种肾脏转录本的表达水平与其他非肾脏细胞中的表达水平进行了比较。结果,我们鉴定了一种新的人类基因,Megsin,它是一种主要在肾脏中表达的新型丝氨酸蛋白酶抑制剂(serpin)。梅格森在肾脏疾病中上调。基因组分析揭示了megsin基因的多态性与肾脏疾病的易感性和/或进展有关。它在啮齿动物中的过度表达导致人们认识到两种不同的肾脏异常。第一种疾病与梅格森生物学效应本身有关,另一种疾病与其构象异常有关,最近称为丝状病变。在后一种模型中,细胞和组织损伤是由内质网(ER)应力引起的,内质网是由于麦格辛三级结构导致的构象紊乱而引起的。在这两种类型中,抑制麦蛋白的活性或异常构象变化都应开辟新的治疗前景。希望通过提供一种新的治疗策略来预防这些异常,从而通过基于结构的药物设计方法(依赖于精确已知的三维维他命结构)刺激了维他命抑制剂的发展。

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