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NELL2-ROS1 旁分泌信号调控哺乳动物精子成熟的分子机制。

The molecular mechanisms of mammalian sperm maturation regulated by NELL2-ROS1 lumicrine signaling.

机构信息

Research Institute for Microbial Diseases, Osaka University, Suita, 565-0871, Japan.

PRESTO, Japan Science and Technology Agency, Chiyoda-ku, 102-0076 Japan.

出版信息

J Biochem. 2022 Dec 5;172(6):341-346. doi: 10.1093/jb/mvac071.

Abstract

In terrestrial vertebrates, spermatozoa generated in the testis are transported through the reproductive tract toward outside the body. In addition to as the pathway of sperm transport, the male reproductive tract also functions as the site of post-testicular sperm maturation and the epididymis, which constitutes the majority of male reproductive tract, and plays central roles in such a sperm maturation. Recent studies with gene-modified animals have been unveiling not only the molecular mechanisms of sperm maturation in the epididymis but also the regulatory system by which the epididymis acquires and executes sperm-maturing functions. In this review, the mechanisms of mammalian sperm maturation will be summarized, based on recent findings, including the lumicrine regulation of sperm maturation.

摘要

在陆栖脊椎动物中,睾丸中产生的精子通过生殖道向体外运输。除了作为精子运输的途径外,雄性生殖道还作为精子后成熟的部位,而附睾构成了大部分的雄性生殖道,并在精子成熟中发挥核心作用。最近利用基因修饰动物的研究不仅揭示了附睾中精子成熟的分子机制,还揭示了附睾获得和执行精子成熟功能的调控系统。在这篇综述中,将根据最近的发现总结哺乳动物精子成熟的机制,包括精子成熟的亮氨酸调节。

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