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水通道蛋白参与硬骨鱼金头鲷(Sparus aurata)精子活力激活的证据。

Evidence for the involvement of aquaporins in sperm motility activation of the teleost gilthead sea bream (Sparus aurata).

作者信息

Zilli Loredana, Schiavone Roberta, Chauvigné François, Cerdà Joan, Storelli Carlo, Vilella Sebastiano

机构信息

Laboratory of Comparative Physiology, Department of Biological and Environmental Sciences and Technologies, University of Salento, Lecce, Italy.

出版信息

Biol Reprod. 2009 Nov;81(5):880-8. doi: 10.1095/biolreprod.109.077933. Epub 2009 Jul 1.

Abstract

The expression of aquaporins in the spermatozoa of the marine teleost gilthead sea bream (Sparus aurata) and their involvement in the motility activation process were investigated. Sperm motility was activated by a hyperosmotic shock, but it was completely inhibited by 10 microM HgCl(2), such inhibition being partially recovered by beta-mercaptoethanol (ME). Conventional RT-PCR using primers specific for S. aurata aquaglyceroporin (glp) and aquaporin 1a (aqp1a) demonstrated the presence of both mRNAs in spermatozoa. Heterologous expression in Xenopus laevis oocytes showed that 10 and 100 microM HgCl(2) equally inhibited water and solute transport through S. aurata aquaporin 1a and S. aurata aquaglyceroporin, but treatment with ME only recovered aquaporin 1a-mediated water permeability. Western blot analysis using isoform-specific antisera on protein extracts from spermatozoa revealed bands that corresponded to the predicted molecular mass of S. aurata aquaglyceroporin (31 kDa) and S. aurata aquaporin 1a (28 kDa). The antisera also demonstrated that both aquaporins were localized in the head and flagellum of the spermatozoa. However, the immunoreaction at the plasma membrane of the spermatozoa head was more intense after the hyperosmotic activation, suggesting the translocation of both aquaporin 1a and aquaglyceroporin into the plasma membrane after the osmotic shock. This study therefore provides the first direct demonstration for the presence of aquaporins in fish sperm. The different sensitivities of S. aurata aquaporin 1a and S. aurata aquaglyceroporin to ME may explain the failure of this reducing agent to fully recover the mercurial inhibition of sperm motility, suggesting that these aquaporins may play different physiological roles during the activation and maintenance of sperm motility in sea bream.

摘要

研究了海洋硬骨鱼金头鲷(Sparus aurata)精子中水通道蛋白的表达及其在运动激活过程中的作用。精子运动通过高渗休克激活,但完全被10微摩尔/升的HgCl₂抑制,β-巯基乙醇(ME)可部分恢复这种抑制。使用针对金头鲷水甘油通道蛋白(glp)和水通道蛋白1a(aqp1a)的特异性引物进行常规RT-PCR,证明精子中存在这两种mRNA。在非洲爪蟾卵母细胞中的异源表达表明,10和100微摩尔/升的HgCl₂同样抑制通过金头鲷水通道蛋白1a和金头鲷水甘油通道蛋白的水和溶质转运,但用ME处理仅恢复了水通道蛋白1a介导的水通透性。使用针对精子蛋白提取物的同工型特异性抗血清进行的蛋白质印迹分析显示,条带对应于金头鲷水甘油通道蛋白(31 kDa)和金头鲷水通道蛋白1a(28 kDa)的预测分子量。抗血清还表明,这两种水通道蛋白都定位于精子的头部和鞭毛。然而,高渗激活后精子头部质膜的免疫反应更强,表明渗透休克后水通道蛋白1a和水甘油通道蛋白都转运到了质膜中。因此,本研究首次直接证明了鱼类精子中存在水通道蛋白。金头鲷水通道蛋白1a和金头鲷水甘油通道蛋白对ME的不同敏感性可能解释了这种还原剂未能完全恢复汞对精子运动的抑制作用,这表明这些水通道蛋白在金头鲷精子运动的激活和维持过程中可能发挥不同的生理作用。

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