Classical cadherins in the testis: how are they regulated?

IF 1.8 4区 生物学 Q3 DEVELOPMENTAL BIOLOGY
Ha Tuyen Nguyen, Luc J Martin
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引用次数: 0

Abstract

Cadherins (CDH) are crucial intercellular adhesion molecules, contributing to morphogenesis and creating tissue barriers by regulating cells' movement, clustering and differentiation. In the testis, classical cadherins such as CDH1, CDH2 and CDH3 are critical to gonadogenesis by promoting the migration and the subsequent clustering of primordial germ cells with somatic cells. While CDH2 is present in both Sertoli and germ cells in rodents, CDH1 is primarily detected in undifferentiated spermatogonia. As for CDH3, its expression is mainly found in germ and pre-Sertoli cells in developing gonads until the establishment of the blood-testis barrier (BTB). This barrier is made of Sertoli cells forming intercellular junctional complexes. The restructuring of the BTB allows the movement of early spermatocytes toward the apical compartment as they differentiate during a process called spermatogenesis. CDH2 is among many junctional proteins participating in this process and is regulated by several pathways. While cytokines promote the disassembly of the BTB by enhancing junctional protein endocytosis for degradation, testosterone facilitates the assembly of the BTB by increasing the recycling of endocytosed junctional proteins. Mitogen-activated protein kinases (MAPKs) are also mediators of the BTB kinetics in many chemically induced damages in the testis. In addition to regulating Sertoli cell functions, follicle stimulating hormone can also regulate the expression of CDH2. In this review, we discuss the current knowledge on regulatory mechanisms of cadherin localisation and expression in the testis.

睾丸中的经典钙粘蛋白:它们是如何调节的?
钙粘蛋白(CDH)是至关重要的细胞间粘附分子,通过调节细胞的运动、聚集和分化,有助于形态发生和制造组织屏障。在睾丸中,经典的钙粘蛋白如CDH1、CDH2和CDH3通过促进原始生殖细胞与体细胞的迁移和随后的聚集,对性腺发育至关重要。虽然CDH2存在于啮齿类动物的支持细胞和生殖细胞中,但CDH1主要在未分化的精原细胞中检测到。至于CDH3,它的表达主要在生殖腺和发育中的前支持细胞中发现,直到血睾丸屏障(BTB)的建立。这种屏障是由支持细胞形成细胞间连接复合体组成的。BTB的重组允许早期精母细胞在称为精子发生的过程中向顶端室移动。CDH2是参与这一过程的许多连接蛋白之一,并受到多种途径的调节。虽然细胞因子通过增强结合蛋白的内吞作用来促进BTB的分解以进行降解,但睾酮通过增加内吞结合蛋白的再循环来促进BTB的组装。有丝分裂原活化蛋白激酶(MAPKs)也是许多化学诱导的睾丸损伤中BTB动力学的介质。除了调节支持细胞功能外,卵泡刺激素还可以调节CDH2的表达。在这篇综述中,我们讨论了目前关于钙粘蛋白在睾丸中定位和表达的调控机制的知识。
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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来源期刊
CiteScore
2.10
自引率
10.50%
发文量
317
审稿时长
2 months
期刊介绍: Reproduction, Fertility and Development is an international journal for the publication of original and significant contributions on vertebrate reproductive and developmental biology. Subject areas include, but are not limited to: physiology, biochemistry, cell and molecular biology, endocrinology, genetics and epigenetics, behaviour, immunology and the development of reproductive technologies in humans, livestock and wildlife, and in pest management. Reproduction, Fertility and Development is a valuable resource for research scientists working in industry or academia on reproductive and developmental biology, clinicians and veterinarians interested in the basic science underlying their disciplines, and students. Reproduction, Fertility and Development is the official journal of the International Embryo Technology Society and the Society for Reproductive Biology. Reproduction, Fertility and Development is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science.
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