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小鼠精子的顶体小泡是一个钙库。

The acrosomal vesicle of mouse sperm is a calcium store.

作者信息

Herrick Scott B, Schweissinger Daniel L, Kim Soo-Woo, Bayan Keith R, Mann Steven, Cardullo Richard A

机构信息

Department of Biology, University of California, Riverside, California 92521, USA.

出版信息

J Cell Physiol. 2005 Mar;202(3):663-71. doi: 10.1002/jcp.20172.

Abstract

Subsequent to binding to the zona pellucida, mammalian sperm undergo a regulated sequence of events that ultimately lead to acrosomal exocytosis. Like most regulated exocytotic processes, a rise in intracellular calcium is sufficient to trigger this event although the precise mechanism of how this is achieved is still unclear. Numerous studies on mouse sperm have indicated that a voltage-operated Ca2+ channel plays some immediate role following sperm binding to the zona pellucida glycoprotein ZP3. However, there is also evidence that the mammalian sperm acrosome contains a high density of IP3 receptors, suggesting that the exocytotic event involves the release of Ca2+ from the acrosome. The release of Ca2+ from the acrosome may directly trigger exocytosis or may activate store-operated Ca2+ channels in the plasma membrane. To test the hypothesis that the acrosome is an intracellular store we loaded mammalian sperm with the membrane permeant forms of three Ca2+-sensitive fluorescent indicator dyes: fura-2, indo-1, and Calcium Green-5N. Fluorescence microscopy revealed that the sperm were labeled in all intracellular compartments. When fura-2 labeled sperm were treated with 150 microM MnCl2 to quench all fluorescence in the cytosol, or when the sperm were labeled with the low affinity dye Calcium Green-5N, there was a large Ca2+ signal in the acrosome. Consistent with the acrosome serving as an intracellular Ca2+ reservoir, the addition of 20 microM thapsigargin, a potent inhibitor of the smooth endoplasmic reticular Ca2+-ATPase (SERCA), to populations of capacitated sperm resulted in nearly 100% acrosomal exocytosis within 60 min (tau1/2 approximately 10 min), in the absence of extracellular Ca2+. Additionally, treatment of sperm with 100 microM thimerosal, an IP3 receptor agonist, also resulted in acrosomal exocytosis. Taken together, these data suggest that the mouse sperm acrosome is a Ca2+ store that regulates its own exocytosis through an IP3 Ca2+ mobilization pathway.

摘要

在与透明带结合后,哺乳动物精子会经历一系列受调控的事件,最终导致顶体胞吐。与大多数受调控的胞吐过程一样,细胞内钙离子浓度升高足以触发这一事件,尽管实现这一过程的确切机制仍不清楚。对小鼠精子的大量研究表明,电压门控钙离子通道在精子与透明带糖蛋白ZP3结合后立即发挥作用。然而,也有证据表明哺乳动物精子顶体含有高密度的肌醇1,4,5-三磷酸(IP3)受体,这表明胞吐事件涉及从顶体释放钙离子。从顶体释放钙离子可能直接触发胞吐作用,也可能激活质膜中的钙库操纵性钙离子通道。为了验证顶体是细胞内钙库这一假设,我们用三种对钙离子敏感的荧光指示剂染料的膜透性形式加载哺乳动物精子:fura-2、indo-1和钙绿-5N。荧光显微镜显示精子在所有细胞内区室都有标记。当用150微摩尔/升氯化锰处理fura-2标记的精子以淬灭胞质溶胶中的所有荧光时,或者当精子用低亲和力染料钙绿-5N标记时,顶体中有大量钙离子信号。与顶体作为细胞内钙离子储存库一致,向获能精子群体中添加20微摩尔/升毒胡萝卜素(一种平滑肌内质网钙离子-ATP酶(SERCA)的强效抑制剂),在无细胞外钙离子的情况下,60分钟内几乎100%发生顶体胞吐(半衰期约10分钟)。此外,用100微摩尔/升硫柳汞(一种IP3受体激动剂)处理精子也会导致顶体胞吐。综上所述,这些数据表明小鼠精子顶体是一个钙离子储存库,通过IP3钙离子动员途径调节其自身的胞吐作用。

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