Pelletier R-Marc, Akpovi Casimir D, Chen Li, Kumar Nalin M, Vitale María L
Department of Pathology and Cell Biology, Université de Montréal, Québec, Canada; and
Department of Pathology and Cell Biology, Université de Montréal, Québec, Canada; and.
Am J Physiol Regul Integr Comp Physiol. 2015 Aug 1;309(3):R255-76. doi: 10.1152/ajpregu.00152.2015. Epub 2015 May 27.
Gap junction-mediated communication helps synchronize interconnected Sertoli cell activities. Besides, coordination of germ cell and Sertoli cell activities depends on gap junction-mediated Sertoli cell-germ cell communication. This report assesses mechanisms underlying the regulation of connexin 46 (Cx46) and Cx50 in mouse testis and those accompanying a "natural" seasonal and a pathological arrest of spermatogenesis, resulting from autoimmune orchitis (AIO) in mink. Furthermore, the impact of deleting Cx46 or Cx50 on the expression, phosphorylation of junction proteins, and spermatogenesis is evaluated. Cx46 mRNA and protein expression increased, whereas Cx50 decreased with adulthood in normal mice and mink. Cx46 mRNA and protein expression increased, whereas Cx50 decreased with adulthood in normal mice and mink. During the mink active spermatogenic phase, Cx50 became phosphorylated and localized to the site of the blood-testis barrier. By contrast, Cx46 was dephosphorylated and associated with annular junctions, suggesting phosphorylation/dephosphorylation of Cx46 and Cx50 involvement in the barrier dynamics. Cx46-positive annular junctions in contact with lipid droplets were found. Cx46 and Cx50 expression and localization were altered in mink with AIO. The deletion of Cx46 or Cx50 impacted on other connexin expression and phosphorylation and differently affected tight and adhering junction protein expression. The level of apoptosis, determined by ELISA, and a number of Apostain-labeled spermatocytes and spermatids/tubules were higher in mice lacking Cx46 (Cx46-/-) than wild-type and Cx50-/- mice, arguing for life-sustaining Cx46 gap junction-mediated exchanges in late-stage germ cells secluded from the blood by the barrier. The data show that expression and phosphorylation of Cx46 and Cx50 are complementary in seminiferous tubules.
缝隙连接介导的通讯有助于使相互连接的支持细胞活动同步。此外,生殖细胞与支持细胞活动的协调依赖于缝隙连接介导的支持细胞-生殖细胞通讯。本报告评估了小鼠睾丸中连接蛋白46(Cx46)和Cx50的调控机制,以及水貂自身免疫性睾丸炎(AIO)导致的“自然”季节性和病理性精子发生停滞时的相关机制。此外,还评估了缺失Cx46或Cx50对连接蛋白表达、磷酸化以及精子发生的影响。在正常小鼠和水貂中,Cx46的mRNA和蛋白表达随成年而增加,而Cx50则下降。在水貂活跃的精子发生阶段,Cx50发生磷酸化并定位于血睾屏障部位。相比之下,Cx46去磷酸化并与环形连接相关,提示Cx46和Cx50的磷酸化/去磷酸化参与屏障动态变化。发现了与脂滴接触的Cx46阳性环形连接。在患有AIO的水貂中,Cx46和Cx50的表达及定位发生改变。缺失Cx46或Cx50会影响其他连接蛋白的表达和磷酸化,并对紧密连接和黏附连接蛋白的表达产生不同影响。通过ELISA测定的凋亡水平以及Apostain标记的精子细胞和精子/曲细精管数量在缺乏Cx46(Cx46-/-)的小鼠中高于野生型和Cx50-/-小鼠,这表明在被屏障与血液隔离的晚期生殖细胞中,Cx46缝隙连接介导的交换对维持生命至关重要。数据表明,Cx46和Cx50的表达及磷酸化在生精小管中具有互补性。