A local regulatory network in the testis mediated by laminin and collagen fragments that supports spermatogenesis.

IF 6.2 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Critical Reviews in Biochemistry and Molecular Biology Pub Date : 2021-06-01 Epub Date: 2021-03-25 DOI:10.1080/10409238.2021.1901255
Linxi Li, Huitao Li, Lingling Wang, Tiao Bu, Shiwen Liu, Baiping Mao, C Yan Cheng
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引用次数: 5

Abstract

It is almost five decades since the discovery of the hypothalamic-pituitary-testicular axis. This refers to the hormonal axis that connects the hypothalamus, pituitary gland and testes, which in turn, regulates the production of spermatozoa through spermatogenesis in the seminiferous tubules, and testosterone through steroidogenesis by Leydig cells in the interstitium, of the testes. Emerging evidence has demonstrated the presence of a regulatory network across the seminiferous epithelium utilizing bioactive molecules produced locally at specific domains of the epithelium. Studies have shown that biologically active fragments are produced from structural laminin and collagen chains in the basement membrane. Additionally, bioactive peptides are also produced locally in non-basement membrane laminin chains at the Sertoli-spermatid interface known as apical ectoplasmic specialization (apical ES, a testis-specific actin-based anchoring junction type). These bioactive peptides are derived from structural laminins and/or collagens at the corresponding sites through proteolytic cleavage by matrix metalloproteinases (MMPs). They in turn serve as autocrine and/or paracrine factors to modulate and coordinate cellular events across the epithelium by linking the apical and basal compartments, the apical and basal ES, the blood-testis barrier (BTB), and the basement membrane of the tunica propria. The cellular events supported by these bioactive peptides/fragments include the release of spermatozoa at spermiation, remodeling of the immunological barrier to facilitate the transport of preleptotene spermatocytes across the BTB, and the transport of haploid spermatids across the epithelium to support spermiogenesis. In this review, we critically evaluate these findings. Our goal is to identify research areas that deserve attentions in future years. The proposed research also provides the much needed understanding on the biology of spermatogenesis supported by a local network of regulatory biomolecules.

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睾丸中由层粘连蛋白和胶原蛋白片段介导的支持精子发生的局部调节网络。
下丘脑-垂体-睾丸轴的发现已经将近50年了。这是指连接下丘脑、脑垂体和睾丸的激素轴,它通过精小管中的精子生成和睾丸间质中间质细胞的类固醇生成来调节精子的产生。新出现的证据表明,在精原上皮中存在一个调节网络,利用在上皮特定区域局部产生的生物活性分子。研究表明,具有生物活性的片段是由基膜中的结构层粘连蛋白和胶原链产生的。此外,生物活性肽也在支持细胞-精子细胞界面的非基底膜层粘连蛋白链中局部产生,称为根尖外质特化(根尖ES,睾丸特异性的基于动作蛋白的锚定连接类型)。这些生物活性肽是由结构层粘连蛋白和/或相应部位的胶原通过基质金属蛋白酶(MMPs)的蛋白水解裂解而产生的。它们反过来作为自分泌和/或旁分泌因子,通过连接根尖和基底室、根尖和基底ES、血睾丸屏障(BTB)和固有膜基底膜来调节和协调上皮内的细胞事件。这些生物活性肽/片段支持的细胞事件包括:精子在受精时的释放、免疫屏障的重塑以促进preleptotene精子细胞通过BTB的运输,以及单倍体精子细胞通过上皮的运输以支持精子发生。在这篇综述中,我们批判性地评价这些发现。我们的目标是确定未来几年值得关注的研究领域。拟议的研究还提供了对精子发生生物学的急需的理解,这是由局部调节生物分子网络支持的。
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来源期刊
CiteScore
14.90
自引率
0.00%
发文量
6
期刊介绍: As the discipline of biochemistry and molecular biology have greatly advanced in the last quarter century, significant contributions have been made towards the advancement of general medicine, genetics, immunology, developmental biology, and biophysics. Investigators in a wide range of disciplines increasingly require an appreciation of the significance of current biochemical and molecular biology advances while, members of the biochemical and molecular biology community itself seek concise information on advances in areas remote from their own specialties. Critical Reviews in Biochemistry and Molecular Biology believes that well-written review articles prove an effective device for the integration and meaningful comprehension of vast, often contradictory, literature. Review articles also provide an opportunity for creative scholarship by synthesizing known facts, fruitful hypotheses, and new concepts. Accordingly, Critical Reviews in Biochemistry and Molecular Biology publishes high-quality reviews that organize, evaluate, and present the current status of high-impact, current issues in the area of biochemistry and molecular biology. Topics are selected on the advice of an advisory board of outstanding scientists, who also suggest authors of special competence. The topics chosen are sufficiently broad to interest a wide audience of readers, yet focused enough to be within the competence of a single author. Authors are chosen based on their activity in the field and their proven ability to produce a well-written publication.
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