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首页> 外文期刊>BMC Molecular Biology >The human RPS4 paralogue on Yq11.223 encodes a structurally conserved ribosomal protein and is preferentially expressed during spermatogenesis
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The human RPS4 paralogue on Yq11.223 encodes a structurally conserved ribosomal protein and is preferentially expressed during spermatogenesis

机译:Yq11.223上的人类RPS4旁系同源物编码结构保守的核糖体蛋白,并在精子发生过程中优先表达

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The Y chromosome of mammals is particularly prone to accumulate genes related to male fertility. However, the high rate of molecular evolution on this chromosome predicts reduced power to the across-species comparative approach in identifying male-specific genes that are essential for sperm production in humans. We performed a comprehensive analysis of expression of Y-linked transcripts and their X homologues in several human tissues, and in biopsies of infertile patients, in an attempt to identify new testis-specific genes involved in human spermatogenesis. We present evidence that one of the primate-specific Y-linked ribosomal protein genes, RPS4Y2, has restricted expression in testis and prostate, in contrast with its X-linked homologue, which is ubiquitously expressed. Moreover, we have determined by highly specific quantitative real time PCR that RPS4Y2 is more highly expressed in testis biopsies containing germ cells. The in silico analysis of the promoter region of RPS4Y2 revealed several differences relative to RPS4Y1, the more widely expressed paralogue from which Y2 has originated through duplication. Finally, through comparative modelling we obtained the three dimensional models of the human S4 proteins, revealing a conserved structure. Interestingly, RPS4Y2 shows different inter-domain contacts and the potential to establish specific interactions. These results suggest that one of the Y-linked copies of the ribosomal protein S4 is preferentially expressed during spermatogenesis and might be important for germ cell development. Even though RPS4Y2 has accumulated several amino acid changes following its duplication from RPS4Y1, approximately 35 million years ago, the evolution of the Y-encoded RPS4 proteins is structurally constrained. However, the exclusive expression pattern of RPS4Y2 and the novelties acquired at the C-terminus of the protein may indicate some degree of functional specialisation of this protein in spermatogenesis.
机译:哺乳动物的Y染色体特别容易积累与雄性育性有关的基因。然而,该染色体上分子进化的高速率预示着跨物种比较方法在鉴定对人类精子产生必不可少的雄性特异性基因方面的能力下降。我们进行了Y联转录本及其X同源物在几种人体组织和不育患者活检中的表达的全面分析,以试图鉴定参与人类精子发生的新睾丸特异性基因。我们目前的证据表明,与灵长类动物特异的Y连锁核糖体蛋白基因之一RPS4Y2在睾丸和前列腺中的表达受到限制,这与其无处不在的X连锁同源性形成了对比。此外,我们已经通过高度特异性的定量实时PCR确定RPS4Y2在含有生殖细胞的睾丸活检组织中更高的表达。在计算机上对RPS4Y2启动子区域进行的计算机分析表明,相对于RPS4Y1,RPS4Y1的表达更为广泛,其类似物是通过复制产生的,Y2来源于其。最后,通过比较建模,我们获得了人类S4蛋白的三维模型,揭示了保守的结构。有趣的是,RPS4Y2显示出不同的域间联系以及建立特定交互的潜力。这些结果表明,在精子发生过程中优先表达核糖体蛋白S4的一个Y联拷贝,并且可能对生殖细胞的发育很重要。尽管RPS4Y2与RPS4Y1复制后已积累了多个氨基酸变化,大约在3500万年前,但Y编码RPS4蛋白的进化受到结构限制。但是,RPS4Y2的排他性表达方式和在蛋白质C末端获得的新颖性可能表明该蛋白质在精子发生过程中有一定程度的功能特化。

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