Decrouy X, Gasc J-M, Pointis G, Segretain D
INSERM EMI 00-09, Université Paris V, Paris, France.
J Cell Physiol. 2004 Jul;200(1):146-54. doi: 10.1002/jcp.10473.
In the testis, spermatogenesis is a highly regulated process that includes germ cell multiplication and differentiation supported by Sertoli cells. Gap junction intercellular communication (GJIC), that is known to play an important role in the control of cell proliferation and differentiation, allows communication between adjacent cells. Gap junctions are present within the seminiferous epithelium but the precise nature of coupled cells is not yet identified. By applying a dye-transfer assay to testis, we demonstrated that coupling was basally located in the tubular compartment between adjacent Sertoli cells, between Sertoli cells and spermatogonia and early and late spermatocytes, but not between Sertoli cells and spermatids. Furthermore, no dye transfer occurred from germ cells to Sertoli cells. Specificity of the gap junction coupling was verified with known gap junction inhibitors such as oleamide, heptanol, and glycyrrhetinic acid. We developed a sophisticated assay that allows correlating the in vivo dye transfer with cell morphological identification and Cx43 expression. This approach demonstrated the Cx43 participation in the coupling. Interestingly Cx43 expression and dye-coupling varied with the stages of spermatogenesis. Our results suggest that Cx43 based gap junctions form a transversal and longitudinal intercellular communication network within seminiferous tubules, and that specific communication territories are formed within the seminiferous tubules to ensure the synchronization of germ cell proliferation and differentiation.
在睾丸中,精子发生是一个高度受调控的过程,包括由支持细胞支持的生殖细胞增殖和分化。已知间隙连接细胞间通讯(GJIC)在细胞增殖和分化的控制中起重要作用,它允许相邻细胞之间进行通讯。间隙连接存在于生精上皮内,但耦联细胞的确切性质尚未确定。通过对睾丸应用染料转移试验,我们证明耦联主要位于相邻支持细胞之间、支持细胞与精原细胞以及早期和晚期精母细胞之间的管状隔室中,而在支持细胞与精子细胞之间则不存在。此外,没有染料从生殖细胞转移到支持细胞。间隙连接耦联的特异性用已知的间隙连接抑制剂如油酰胺、庚醇和甘草次酸进行了验证。我们开发了一种复杂的试验方法,能够将体内染料转移与细胞形态鉴定和Cx43表达相关联。这种方法证明了Cx43参与了耦联。有趣的是,Cx43表达和染料耦联随精子发生阶段而变化。我们的结果表明基于Cx43的间隙连接在生精小管内形成了横向和纵向的细胞间通讯网络,并且在生精小管内形成了特定的通讯区域以确保生殖细胞增殖和分化的同步。