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在精发生长过程中对 DNA 合成的刺激和抑制调控:尖吻鲛的研究。

Stimulatory and inhibitory regulation of DNA synthesis during spermatogenesis: studies in Squalus acanthias.

机构信息

Department of Biology, Boston University, 5 Cummington Street, Boston, MA, 02215, U.S.A..

出版信息

Fish Physiol Biochem. 1993 Jul;11(1-6):293-8. doi: 10.1007/BF00004578.

Abstract

Spermatogenesis is a unique developmental sequence involving multiple cell to cell interactions and several categories of regulatory molecules. In contrast to conventional mammalian models in which testicular organization is highly complex, the testis of the dogfish shark Squalus acanthias is technically advantageous for elucidating stage-dependent structural and functional charactericsics and for in vitro regulatory studies. Using incorporation of [(3)H]thymidine into acid-insoluble molecules as a measure of DNA synthesis by spermatocysts (germ cell/Sertoli cell units) of premeiotic stages, we obtained evidence of a growth inhibitory bioactivity (chalone) within the testis. This activity is differentially distributed (postmeiotic > meiotic > premeiotic), suggesting that more advanced developmental stages, which are upstream in the vascular pathway within the testis, may control the size of the proliferating spermatocyst population and, hence, the advance of less mature stages. These data provide direct evidence for humoral communication between stages of spermatogenesis.

摘要

精子发生是一个独特的发育过程,涉及多种细胞间的相互作用和几类调节分子。与传统的哺乳动物模型相比,犬齿鲨睾丸组织高度复杂,而角鲨睾丸在阐明阶段依赖性结构和功能特征以及体外调节研究方面具有技术优势。我们利用[(3)H]胸腺嘧啶核苷掺入酸不溶性分子作为生精细胞(生殖细胞/支持细胞单位)有丝分裂前阶段 DNA 合成的测量指标,获得了睾丸内存在生长抑制生物活性(抑素)的证据。这种活性呈差异分布(减数分裂后>减数分裂>有丝分裂前),表明更成熟的发育阶段,即在睾丸内血管途径的上游,可能控制增殖性生精细胞群体的大小,从而推进不太成熟的阶段。这些数据为精子发生各阶段之间的体液通讯提供了直接证据。

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