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鉴定公牛附睾中的腔蛋白和分泌蛋白。

Identification of luminal and secreted proteins in bull epididymis.

机构信息

UMR INRA-CNRS 6175, Nouzilly, 37 380, France.

出版信息

J Proteomics. 2011 Jan 1;74(1):59-78. doi: 10.1016/j.jprot.2010.07.013. Epub 2010 Aug 6.

Abstract

The epididymis plays a major role in the acquisition of sperm fertility. In order to shed light on specific features of epididymal function in mammalian species, we characterized the luminal proteins (luminal proteome) and secreted proteins (secretome) in the bovine epididymis. We identified 172 different luminal proteins in 9 distinct epididymal regions. The concentration and secretory activity of luminal proteins were quantified throughout the epididymis. Among the most abundant secreted proteins, we found lipocalin 5, (LCN5), NADP(+)dependent prostaglandin dehydrogenase (PTGDS), Niemann-Pick disease type C2 protein (NPC2), glutathione peroxidase type 5 (GPX 5), clusterin (CLU), hexosaminidase B (HEXB) and galactosidase (GLB1), each of which is released in distinct epididymal regions. Gelsolin, (GSN) previously not described in mammalian epididymal fluid, appeared to be a major protein secreted exclusively in the distal region of the bovine epididymis, where fully mature spermatozoa are stored. Although the major epididymal proteins are conserved between mammalian species, this study highlights the specificity and mechanisms of protein processing of epididymal secretion in the bull. In addition, this study provides a major insight into the sequential changes occurring in the sperm environment while gaining fertilizing capacity and could provide new information for the future identification of potential fertility markers.

摘要

附睾在精子获得生育能力方面起着重要作用。为了阐明哺乳动物种属附睾功能的特定特征,我们对牛附睾的管腔蛋白(管腔蛋白质组)和分泌蛋白(分泌组)进行了表征。我们在 9 个不同的附睾区域鉴定了 172 种不同的管腔蛋白。在整个附睾中定量了管腔蛋白的浓度和分泌活性。在最丰富的分泌蛋白中,我们发现了脂质运载蛋白 5(LCN5)、NADP+依赖性前列腺素脱氢酶(PTGDS)、尼曼-匹克病 C2 蛋白(NPC2)、谷胱甘肽过氧化物酶 5(GPX5)、簇蛋白(CLU)、己糖胺酶 B(HEXB)和半乳糖苷酶(GLB1),它们分别在不同的附睾区域释放。先前在哺乳动物附睾液中未描述的凝胶蛋白(GSN)似乎是一种主要的蛋白质,仅在牛附睾的远端区域分泌,而完全成熟的精子储存在该区域。虽然主要的附睾蛋白在哺乳动物种属之间是保守的,但这项研究强调了公牛附睾分泌蛋白加工的特异性和机制。此外,这项研究深入了解了精子在获得受精能力时所处环境的连续变化,并为未来潜在生育能力标志物的鉴定提供了新的信息。

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