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DHEAS 诱导的非经典类固醇激素信号转导的生理意义。

Physiological implications of DHEAS-induced non-classical steroid hormone signaling.

机构信息

Institut für Veterinär-Physiologie und -Biochemie, Fachbereich Veterinärmedizin, Justus-Liebig-Universität Giessen, Germany.

Institut für Veterinär-Physiologie und -Biochemie, Fachbereich Veterinärmedizin, Justus-Liebig-Universität Giessen, Germany.

出版信息

J Steroid Biochem Mol Biol. 2018 May;179:73-78. doi: 10.1016/j.jsbmb.2017.10.002. Epub 2017 Oct 7.

Abstract

In the spermatogenic cell line GC-2, dehydroepiandrosterone sulfate (DHEAS), activates the Src/Ras/c-Raf/Erk1/2/CREB(ATF-1) signaling cascade. Since DHEAS is present in the gonads, and since spermatogenesis and maturation of spermatogonia to haploid spermatozoa requires activation of Erk1/2, the triggering of these signaling events by DHEAS might have physiological relevance. In the Sertoli cell line TM4, DHEAS-induces activation of Erk1/2, CREB, and ATF-1, stimulates expression of claudin-3 and claudin-5 and augments transepithelial resistance, indicating the formation of tight junctions between adjacent Sertoli cells. Thus, by influencing the formation and dynamics of tight junctions at the blood-testis barrier, which protects germ cells from cells of the immune system, DHEAS might play a crucial role in the regulation and maintenance of male fertility. In bEnd.3 brain-derived endothelial cells, DHEAS stimulates the expression of zonula occludens-1 and claudin-3 and promotes tight junction formation between neighboring cells, which at the blood-brain barrier protects the brain from harmful factors and cells. If DHEAS supports the integrity of the blood-brain barrier also in vivo, the current findings might lead to new strategies for the prevention or treatment of neurological disorders associated with barrier defects.

摘要

在精原细胞系 GC-2 中,硫酸脱氢表雄酮 (DHEAS) 激活了 Src/Ras/c-Raf/Erk1/2/CREB(ATF-1) 信号级联。由于 DHEAS 存在于性腺中,并且生精作用和精原细胞向单倍体精子的成熟都需要 Erk1/2 的激活,因此 DHEAS 触发这些信号事件可能具有生理相关性。在 Sertoli 细胞系 TM4 中,DHEAS 诱导 Erk1/2、CREB 和 ATF-1 的激活,刺激 Claudin-3 和 Claudin-5 的表达,并增加上皮细胞间电阻,表明相邻 Sertoli 细胞之间形成紧密连接。因此,通过影响血睾屏障中紧密连接的形成和动态,该屏障可保护生殖细胞免受免疫系统细胞的侵害,DHEAS 可能在调节和维持男性生育能力方面发挥关键作用。在脑源性内皮细胞 bEnd.3 中,DHEAS 刺激 Zonula occludens-1 和 Claudin-3 的表达,并促进相邻细胞之间的紧密连接形成,在血脑屏障中保护大脑免受有害物质和细胞的侵害。如果 DHEAS 还能在体内支持血脑屏障的完整性,那么目前的研究结果可能会为预防或治疗与屏障缺陷相关的神经障碍提供新的策略。

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