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UBPy 分拣货物对顶体生物发生的贡献动态:其在 Vps54(L967Q)突变型不育的全球精子症小鼠模型中的脱离的影响。

Dynamic of contribution of UBPy-sorted cargo to acrosome biogenesis: effects of its derailment in a mouse model of globozoospermia, the infertile Vps54 (L967Q) mutant.

机构信息

Department of Biosciences, Unversity of Milan, Via Celoria 26, 20133, Milan, Italy.

出版信息

Cell Tissue Res. 2017 Aug;369(2):413-427. doi: 10.1007/s00441-017-2592-1. Epub 2017 Mar 15.

Abstract

The sperm acrosome is a specialized vacuole, a member of the family of cell-specific lysosome-related organelles. Its exocytosis, the acrosome reaction, is a crucial event during fertilization. The released acrosomal contents promote sperm penetration through the investments of the oocyte, whereas the membranous components of the acrosome are involved in sperm-oocyte interaction/fusion and oocyte activation. The way that these functionally distinct acrosomal costituents reach the vacuole during its biogenesis remains poorly understood. The biosynthetic pathway and a consistent supply from the endosomal system have recently been documented. We use immunogold electron microscopy to determine the contribution of endosome cargo-sorting during step-by-step mouse acrosomogenesis. The chosen proteins of this study were UBPy (ESCRT-DUB), together with endosome compartment markers EEA1 and pallidin. The latter is described here for the first time in male germ cells. This new insight expands our knowledge of acrosomogenesis, confirming the plasticity of the endosomal system in supporting cell-type-specific functions. We also study wobbler mice, whose Vps54 mutation causes motor neuron degeneration and male infertility. Use of electron/immunoelectron microscopy and immunofluorescence enabled us to establish that the lack of an acrosome in wobbler spermatozoa is attributable to an early block in acrosome biogenesis and that the mislocalization of acrosome-destined proteins, potentially involved in the signaling events leading to oocyte activation, is possibly responsible for wobbler infertility, even after intracytoplasmic sperm injection.

摘要

精子顶体是一种特殊的空泡,是细胞特异性溶酶体相关细胞器家族的成员。其外排作用,即顶体反应,是受精过程中的一个关键事件。释放的顶体内容物促进精子穿透卵母细胞的包裹,而顶体的膜成分参与精子-卵母细胞相互作用/融合和卵母细胞激活。这些功能不同的顶体成分在其生物发生过程中如何到达空泡仍然知之甚少。最近已经记录了生物合成途径和内体系统的一致供应。我们使用免疫金电子显微镜来确定内体货物分选在逐步发生的小鼠顶体发生过程中的贡献。本研究选择的蛋白质是 UBPy(ESCRT-DUB),以及内体区室标记物 EEA1 和 pallidin。后者在此首次在雄性生殖细胞中描述。这一新的见解扩展了我们对顶体发生的认识,证实了内体系统在支持细胞类型特异性功能方面的灵活性。我们还研究了 wobbler 小鼠,其 Vps54 突变导致运动神经元变性和男性不育。电子/免疫电子显微镜和免疫荧光的使用使我们能够确定 wobbler 精子中缺乏顶体是由于顶体发生的早期阻断,并且顶体定向蛋白的定位错误,可能参与导致卵母细胞激活的信号事件,可能是 wobbler 不育的原因,即使在胞质内精子注射后也是如此。

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