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首页> 外文期刊>Fish Physiology and Biochemistry >Water homeostasis in the fish oocyte: new insights into the role and molecular regulation of a teleost-specific aquaporin
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Water homeostasis in the fish oocyte: new insights into the role and molecular regulation of a teleost-specific aquaporin

机译:鱼卵母细胞中的水稳态:硬骨特异性水通道蛋白的作用和分子调控的新见解

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摘要

The discovery of the role of a teleost-specific aquaporin (Aqp1ab) during the process of oocyte hydration in marine fish producing pelagic (floating) eggs, recently confirmed by molecular approaches, has revealed that this mechanism is more sophisticated than initially thought. Recent phylogenetic and genomic studies suggest that Aqp1ab likely evolved by tandem duplication from a common ancestor and further neofunctionalized in oocytes for water transport. Investigations into the regulation of Aqp1ab during oogenesis indicate that the mRNA and protein product are highly accumulated during early oocyte growth, possibly through the transcriptional activation of the aqp1ab promoter by the classical nuclear progesterone receptor and perhaps by Sry-related high mobility group [HMG]-box (Sox) transcription factors. During oocyte growth and maturation, Aqp1ab intracellular trafficking may be regulated by phosphorylation and/or dephosphorylation of specific C-terminal residues in Aqp1ab, as well as by signal-mediated sorting processes. These mechanisms possibly regulate the temporal insertion of Aqp1ab into the oocyte plasma membrane during oocyte hydration, although the intracellular signaling pathways involved are yet unknown. Interestingly, in some freshwater species that spawn partially hydrated eggs, high accumulation of transcripts encoding functional Aqp1ab channels have also been found in the ovary. These findings suggest that the Aqp1ab-mediated mechanism for oocyte hydration is likely conserved in teleosts. The tight regulation of Aqp1ab during oogenesis, at both the transcriptional and posttranslational levels, highlights the essential physiological role of this water channel and opens new research avenues for understanding the molecular basis of egg formation in fish.
机译:最近通过分子方法证实了硬骨特异性水通道蛋白(Aqp1ab)在生产浮游卵的海鱼卵母细胞水合过程中的作用的发现,表明该机制比最初的设想更为复杂。最近的系统发育和基因组研究表明,Aqp1ab可能是通过共同祖先的串联复制进化而来,并在卵母细胞中进一步新功能化以进行水运输。对卵子发生过程中Aqp1ab调控的研究表明,mRNA和蛋白产物在卵母细胞早期生长过程中高度积累,可能是通过经典核黄体酮受体以及Sry相关的高迁移率组[HMG]对aqp1ab启动子的转录激活引起的。 -box(Sox)转录因子。在卵母细胞生长和成熟过程中,Aqp1ab的细胞内运输可能受到Aqp1ab中特定C末端残基的磷酸化和/或去磷酸化以及信号介导的分选过程的调节。这些机制可能调节卵母细胞水合过程中Aqp1ab在卵母细胞质膜中的暂时插入,尽管所涉及的细胞内信号传导途径尚不清楚。有趣的是,在一些产卵部分水合的卵的淡水物种中,在卵巢中也发现了高积累的编码功能性Aqp1ab通道的转录本。这些发现表明,硬骨鱼中Aqp1ab介导的卵母细胞水合作用机制可能是保守的。 Aqp1ab在卵子发生过程中在转录和翻译后水平上的严格调控,突显了该水通道的基本生理作用,并为了解鱼类卵形成的分子基础打开了新的研究途径。

著录项

  • 来源
    《Fish Physiology and Biochemistry 》 |2013年第1期| 19-27| 共9页
  • 作者单位

    Laboratory of Institut de Recerca i Tecnologia Agroalimentàries (IRTA)-Institut de Ciències del Mar Consejo Superior de Investigaciones Científicas (CSIC)">(1);

    Laboratory of Institut de Recerca i Tecnologia Agroalimentàries (IRTA)-Institut de Ciències del Mar Consejo Superior de Investigaciones Científicas (CSIC)">(1);

    Laboratory of Institut de Recerca i Tecnologia Agroalimentàries (IRTA)-Institut de Ciències del Mar Consejo Superior de Investigaciones Científicas (CSIC)">(1);

    Institute of Biology Bergen High Technology Center University of Bergen">(2);

    Institute of Marine Research">(3);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Teleost; Aquaporin; Oocyte maturation; Hydration; Evolution; Regulation;

    机译:Teleost;水通道蛋白;卵母细胞成熟;水化;演化;规;

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