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Mouse oocytes connect with granulosa cells by fusing with cell membranes and form a large complex during follicle development

机译:小鼠卵母细胞通过与细胞膜融合而与颗粒细胞连接并在卵泡发育过程中形成大型复合体

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摘要

Proper development and maturation of oocytes requires interaction with granulosa cells. Previous reports have indicated that mammalian oocytes connect with cumulus cells through gap junctions at the tip of transzonal projections that extend from the cells. Although the gap junctions between oocytes and transzonal projections provide a pathway through which small molecules (<1 kDa) can travel, it is unclear how molecules >1 kDa are transported between the oocytes and cumulus cells. In this study, we presented new connections between oocytes and granulosa cells. The green fluorescein protein Aequorea coerulescens green fluorescein protein (AcGFP1) localizing in oocyte cell membrane, 1,1'-dioctadecyl-3,3,3',3'-tetramethylindocarbocyanine perchlorate and dextran conjugates (10,000 MW) injected into the oocytes, which were unable to pass through gap junctions, were diffused from the oocytes into the surrounding granulosa cells through these connections. These connect an oocyte to the surrounding cumulus and granulosa cells by fusing with the cell membranes and forming a large complex during follicle development. Furthermore, we show two characteristics of these connections during follicle development—the localization of growth and differentiation factor-9 within the connections and the dynamics of the connections at ovulation. This article presents for the first time that mammalian oocytes directly connect to granulosa cells by fusing with the cell membrane, similar to that in Drosophila.
机译:卵母细胞的正确发育和成熟需要与颗粒细胞相互作用。先前的报道表明,哺乳动物卵母细胞通过从细胞延伸的跨区突出物尖端的间隙连接与卵丘细胞相连。尽管卵母细胞和跨区投影之间的间隙连接提供了小分子(<1 kDa)可以通过的途径,但目前尚不清楚> 1 kDa的分子如何在卵母细胞和卵丘细胞之间运输。在这项研究中,我们提出了卵母细胞和颗粒细胞之间的新连接。绿色荧光素蛋白蓝藻(Aequorea coerulescens)绿色荧光素蛋白(AcGFP1)定位在卵母细胞细胞膜中,向卵母细胞中注入1,1'-二十八烷基-3,3,3',3'-四甲基吲哚碳菁高氯酸盐和右旋糖酐共轭物(10,000 MW),不能通过间隙连接,通过这些连接从卵母细胞扩散到周围的颗粒细胞。它们通过融合细胞膜并在卵泡发育过程中形成大的复合体,将卵母细胞连接到周围的卵丘和颗粒细胞。此外,我们显示了卵泡发育过程中这些连接的两个特征-连接内生长和分化因子9的定位以及排卵时连接的动力学。本文首次提出哺乳动物卵母细胞通过与细胞膜融合而直接连接到颗粒细胞,类似于果蝇。

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