Proteomic analysis of mammalian gametes and sperm-oocyte interactions.

P. Sutovsky
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引用次数: 18

Abstract

Proteomic analysis occupies an increasingly important place in gamete and embryo biology as an independent tool of discovery and as a means of follow-up to transcriptional profiling. Proteomics have been and will be increasingly helpful in many areas of reproductive biology, including applied science and technology development. Areas likely to be impacted most rapidly by proteomic knowledge include fertility evaluation in male farm animals, male infertility diagnostics in humans, assessment and optimization of oocyte and embryo culture protocols, selection of fittest oocytes for assisted fertilization and selection of most competent embryos for embryo transfer. Oocyte proteomics will help us understand the process of oogenesis and oocyte maturation, and to discover non-invasive markers of oocyte quality. Sperm proteomics correlate with normal sperm structure and function and can be applied to discover novel biomarkers of farm animal fertility and diagnostic markers of human male infertility. Putative receptors participating in fertilization, as well as proteins acquired onto sperm surface from epididymal fluid and seminal plasma, have been discovered by proteomic analysis. An added level of information is provided by advanced proteomic approaches, capable of identifying posttranslational modifications such as phosphorylation, glycosylation and ubiquitination which play important functions in gametogenesis, fertilization and embryo development. By no means exhaustive, the present paper reviews some of the most interesting proteomic studies of mammalian gametes and embryos published in the last decade.
哺乳动物配子和精卵相互作用的蛋白质组学分析。
蛋白质组学分析作为一种独立的发现工具和转录谱的后续手段,在配子和胚胎生物学中占据着越来越重要的地位。蛋白质组学在生殖生物学的许多领域已经并将越来越有帮助,包括应用科学和技术发展。可能最快受到蛋白质组学知识影响的领域包括雄性农场动物的生育能力评估、人类男性不育诊断、卵母细胞和胚胎培养方案的评估和优化、选择最适合辅助受精的卵母细胞以及选择最适合胚胎移植的胚胎。卵母细胞蛋白质组学将帮助我们了解卵子发生和卵母细胞成熟的过程,并发现非侵入性的卵母细胞质量标志物。精子蛋白质组学与正常精子结构和功能相关,可用于发现新的农场动物生育能力生物标志物和人类男性不育的诊断标志物。蛋白质组学分析发现了参与受精的假定受体,以及从附睾液和精浆中获取到精子表面的蛋白质。先进的蛋白质组学方法提供了更高水平的信息,能够识别翻译后的修饰,如磷酸化、糖基化和泛素化,这些修饰在配子发生、受精和胚胎发育中发挥重要作用。本文回顾了过去十年中发表的一些关于哺乳动物配子和胚胎的最有趣的蛋白质组学研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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