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The protein and transcript profiles of human semen

机译:人精液的蛋白质和转录本特征

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The increasing use of "-omics" (genomic, transcriptomic, proteomic, epigenomic, and metabolomic) high-throughput measurement technologies over the past decade is beginning to reveal the complexity of human biology and physiology through the interactions of DNA, RNA, related proteins and small molecules. In reproductive medicine, the majority of this work, has thus far focused on the female factors, e.g., the oocyte, since they provide both the environment and the majority of elements required for embryogenesis. State-of-the-art sequencing and computational analyses have enabled a deeper understanding of the underlying components. Contrary to being simply a silent delivery vehicle to the oocyte of the packaged male DNA, sperm provide both a specific epigenetically marked genome together with a complex population of RNAs and proteins that are crucial for early embryogenesis. In addition to the sperm, seminal fluid appears to serve multiple roles providing a supplementary series of components that allow the sperm to successfully reach and fertilize the oocyte and prepare the female immune system to tolerate the semiallosteric embryo. A global analysis and review of what is presently known regarding the unique role of each component of the male factor and their associated interactions begins to shed light on this emergent field.
机译:在过去十年中,越来越多地使用“ -omics”(基因组,转录组学,蛋白质组学,表观基因组学和代谢组学)高通量测量技术,开始通过DNA,RNA,相关蛋白质的相互作用揭示人类生物学和生理学的复杂性和小分子。迄今为止,在生殖医学中,这项工作的大部分都集中在女性因素上,例如卵母细胞,因为它们既提供了环境,又提供了胚胎发生所需的大多数元素。最新的排序和计算分析使您能够对底层组件有更深入的了解。与简单地作为包装的雄性DNA卵母细胞的沉默传递载体相反,精子既提供了特定的表观遗传学标记的基因组,又提供了对早期胚胎发生至关重要的复杂RNA和蛋白质。除精子外,精液似乎还起着多种作用,提供了一系列补充成分,使精子能够成功到达卵子并使其受精,并使女性免疫系统能够耐受半变构胚。对目前已知的有关男性因素的每个成分的独特作用及其相关相互作用的全球分析和回顾,开始为这一新兴领域提供启示。

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