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首页> 外文期刊>BMC Developmental Biology >Gap junctions in the ovary of Drosophila melanogaster: localization of innexins 1, 2, 3 and 4 and evidence for intercellular communication via innexin-2 containing channels
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Gap junctions in the ovary of Drosophila melanogaster: localization of innexins 1, 2, 3 and 4 and evidence for intercellular communication via innexin-2 containing channels

机译:果蝇卵巢中的间隙连接:内毒素1,2,3和4的本地化和证据表明通过内含内毒素2通道的细胞间通讯。

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Background In the Drosophila ovary, germ-line and soma cells are interconnected via gap junctions. The main gap-junction proteins in invertebrates are members of the innexin family. In order to reveal the role that innexins play in cell-cell communication during oogenesis, we investigated the localization of innexins 1, 2, 3 and 4 using immunohistochemistry, and analyzed follicle development following channel blockade. Results We found innexin 1 predominantly localized to the baso-lateral domain of follicle cells, whereas innexin 2 is positioned apico-laterally as well as apically between follicle cells and germ-line cells. Innexin 3 was observed laterally in follicle cells and also in nurse cells, and innexin 4 was detected in the oolemma up to stage 8 and in nurse-cell membranes up to stage 12. In order to test whether innexins form channels suitable for intercellular communication, we microinjected innexin antibodies in combination with a fluorescent tracer into the oocyte of stage-10 follicles. We found that dye-coupling between oocyte and follicle cells was largely reduced by innexin-2 antibodies directed against the intracellular C-terminus as well as against the intracellular loop. Analyzing in vitro, between stages 10 and 14, the developmental capacities of follicles following microinjections of innexin-2 antibodies revealed defects in follicle-cell differentiation, nurse-cell regression, oocyte growth and choriogenesis. Conclusion Our results suggest that all analyzed innexins are involved in the formation of gap junctions in the ovary. While innexins 2 and 3 are colocalized between soma cells, innexins 2 and 4 are colocalized between soma and germ-line cells. Innexin 2 is participating in cell-cell communication via hemichannels residing in the oolemma. It is obvious that gap-junctional communication between germ-line and soma cells is essential for several processes during oogenesis.
机译:背景技术果蝇卵巢中,生殖细胞和体细胞通过间隙连接相互连接。无脊椎动物中主要的缝隙连接蛋白是innexin家族的成员。为了揭示卵清蛋白在卵子发生过程中在细胞间通讯中的作用,我们使用免疫组织化学方法研究了卵清蛋白1、2、3和4的定位,并分析了通道阻滞后卵泡的发育。结果我们发现内毒素1主要位于卵泡细胞的基底外侧结构域,而内毒素2则位于卵泡细胞与种系细胞的顶侧和顶端。在卵泡细胞和护士细胞的侧面均观察到Innexin 3,直到阶段8的血肿和直到阶段12的护士细胞膜中都检测到了内毒素4。为了测试内毒素是否形成了适合细胞间通讯的通道,我们将结合innexin抗体和荧光示踪剂的微注射入10期卵泡的卵母细胞中。我们发现,针对细胞内C末端以及细胞内环的innexin-2抗体大大减少了卵母细胞和卵泡细胞之间的染料偶联。在体外分析中,在第10和第14阶段之间,微注射Innexin-2抗体后的卵泡发育能力揭示了卵泡细胞分化,护士细胞消退,卵母细胞生长和绒毛膜形成的缺陷。结论我们的结果表明,所有分析的内毒素均参与卵巢间隙连接的形成。内毒素2和3在体细胞之间共定位,而内毒素2和4在体细胞和种系细胞之间共定位。 Innexin 2正在通过位于血肿中的半通道参与细胞间通讯。很明显,生殖细胞和体细胞之间的间隙连接通讯对于卵子发生过程中的多个过程至关重要。

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