Izzo G, d'Istria M, Ferrara D, Serino I, Aniello F, Minucci S
Dipartmento di Medicina Sperimentale, Seconda Universitá di Napoli, Italy.
Zygote. 2006 Nov;14(4):349-57. doi: 10.1017/S096719940600390X.
Testicular cell-to-cell interactions play a key role in the regulation of spermatogenesis. In the testis, cell contacts are mediated through several mechanisms, including paracrine and direct contacts depending on gap junctional pathways. Gap junctions require connexin (Cx) channels and connexin-43 (Cx43) represent the most abundant Cx found in mammalian testis. Little is known about Cx expression in non-mammalian testis. Here we report the partial cloning of a Cx43 transcript of 381 bp from Rana esculenta testis. We also demonstrate that, in the frog testis, Cx43 transcript and protein show a parallel temporal and spatial pattern of expression throughout the reproductive annual cycle, with higher levels from September to January (when spermatogenesis is at a maximum level). In situ hybridization, carried out on testis collected in October, indicated that Leydig cells (LC) and Sertoli cells express Cx43 transcript, while the hybridization signal was less intense in germ cells. To obtain more information on Cx43 expression in the frog testis, we have used ethane-dimethane sulphonate (EDS), a toxin that specifically destroys LC. RT-PCR analysis shows a progressive decrease in Cx43 expression in EDS-treated testis from day 1 to day 4 after the injection, associated with LC destruction. Moreover, Cx43 expression returns to normal on day 28, when a new population of LC reappear in the interstitium, indicating that Cx43 is mainly expressed by LC. Taken together our data provide evidence that Cx43 is present in the frog testis with an important role in spermatogenesis.
睾丸细胞间相互作用在精子发生的调控中起关键作用。在睾丸中,细胞间接触通过多种机制介导,包括旁分泌和依赖缝隙连接途径的直接接触。缝隙连接需要连接蛋白(Cx)通道,而连接蛋白43(Cx43)是哺乳动物睾丸中最丰富的Cx。关于非哺乳动物睾丸中Cx的表达知之甚少。在此,我们报告了从食用蛙睾丸中克隆出的381 bp的Cx43转录本的部分序列。我们还证明,在蛙睾丸中,Cx43转录本和蛋白在整个生殖年周期中呈现出平行的时空表达模式,9月至1月水平较高(此时精子发生处于最高水平)。对10月采集的睾丸进行原位杂交表明,睾丸间质细胞(LC)和支持细胞表达Cx43转录本,而生殖细胞中的杂交信号较弱。为了获得更多关于蛙睾丸中Cx43表达的信息,我们使用了乙烷二甲磺酸盐(EDS),一种特异性破坏LC的毒素。逆转录聚合酶链反应(RT-PCR)分析显示,注射后第1天至第4天,EDS处理的睾丸中Cx43表达逐渐下降,这与LC的破坏有关。此外,当第28天间质中出现新的LC群体时,Cx43表达恢复正常,表明Cx43主要由LC表达。综合我们的数据表明,Cx43存在于蛙睾丸中,在精子发生中起重要作用。