Villarroel-Espíndola Franz, Tapia Cynthia, González-Stegmaier Roxana, Concha Ilona I, Slebe Juan Carlos
Instituto de Bioquímica y Microbiología, Universidad Austral de Chile, Valdivia, Chile.
Instituto de Patología Animal, Universidad Austral de Chile, Valdivia, Chile.
J Cell Physiol. 2016 Oct;231(10):2142-52. doi: 10.1002/jcp.25315. Epub 2016 Feb 11.
Glycogen is the main storage form of glucose; however, the accumulation of glycogen-like glucose polymers can lead to degeneration and cellular death. Previously, we reported that the accumulation of glycogen in testis of transgenic animals overexpressing a constitutively active form of glycogen synthase enhances the apoptosis of pre-meiotic male germ cells and a complete disorganization of the seminiferous tubules. Here we sought to further identify the effects of glycogen storage in cells from the seminiferous tubules and the mechanism behind the pro-apoptotic activity induced by its accumulation. Using an in vitro culture of Sertoli cells (line 42GPA9) and spermatocyte-like cells (line GC-1) expressing a superactive form of glycogen synthase or the Protein Targeting to Glycogen (PTG), we found that glycogen synthesized in both cell lines is poorly branched. In addition, the immunodetection of key molecules of apoptotic events suggests that cellular death induced by polyglucosan molecules affects GC-1 cells, but not 42GPA9 cells by mitochondrial impairment and activation of an intrinsic apoptotic pathway. Furthermore, we analyzed the effects of glycogen deposition during the establishment of an in vitro blood-testis barrier. The results using a non-permeable fluorescent molecule showed that, in conditions of over-synthesis of glycogen, 42GPA9 cells do not lose their capacity to generate an impermeable barrier and the levels of connexin43, occludin, and ZO1 proteins were not affected. These results suggest that the accumulation of polyglucosan molecules has a selective effect-triggered by the intrinsic activation of the apoptotic pathway-in germ cells without directly affecting Sertoli cells. J. Cell. Physiol. 231: 2142-2152, 2016. © 2016 Wiley Periodicals, Inc.
糖原是葡萄糖的主要储存形式;然而,类糖原葡萄糖聚合物的积累会导致细胞变性和死亡。此前,我们报道过,在过表达组成型活性糖原合酶的转基因动物睾丸中,糖原的积累会增强减数分裂前雄性生殖细胞的凋亡,并导致生精小管完全紊乱。在此,我们试图进一步确定生精小管细胞中糖原储存的影响及其积累诱导促凋亡活性背后的机制。通过对表达超活性糖原合酶或糖原靶向蛋白(PTG)的支持细胞系(42GPA9)和类精母细胞系(GC-1)进行体外培养,我们发现这两种细胞系中合成的糖原分支很少。此外,对凋亡事件关键分子的免疫检测表明,由聚葡糖分子诱导的细胞死亡通过线粒体损伤和内源性凋亡途径的激活影响GC-1细胞,但不影响42GPA9细胞。此外,我们分析了体外血睾屏障建立过程中糖原沉积的影响。使用一种不可渗透的荧光分子的结果表明,在糖原过度合成的条件下,42GPA9细胞不会丧失产生不可渗透屏障的能力,连接蛋白43、闭合蛋白和ZO1蛋白的水平也不受影响。这些结果表明,聚葡糖分子的积累通过凋亡途径的内源性激活对生殖细胞产生选择性作用,而不会直接影响支持细胞。《细胞生理学杂志》2016年第231卷:2142 - 2152页。© 2016威利期刊公司