Jungnickel M K, Marrero H, Birnbaumer L, Lémos J R, Florman H M
Department of Cell Biology, University of Massachusetts Medical School, Worcester, Massachusetts 01655, USA.
Nat Cell Biol. 2001 May;3(5):499-502. doi: 10.1038/35074570.
In many cells, receptor activation initiates sustained Ca2+ entry which is critical in signal transduction. Mammalian transient receptor potential (Trp) proteins, which are homologous to the Drosophila photoreceptor-cell Trp protein, have emerged as candidate subunits of the ion channels that mediate this influx. As a consequence of overexpression, these proteins produce cation currents that open either after depletion of internal Ca2+ stores or through receptor activation. However, determining the role of endogenous Trp proteins in signal transduction is complicated by the absence of selective antagonists. Here we examine Trp function during sperm-egg interaction. The sperm acrosome reaction is a Ca2+-dependent secretory event that must be completed before fertilization. In mammals, exocytosis is triggered during gamete contact by ZP3, a glycoprotein constituent of the egg's extracellular matrix, or zona pellucida (ZP). ZP3 activates trimeric G proteins and phospholipase C and causes a transient Ca2+ influx into sperm through T-type Ca2+ channels. These early responses promote a second Ca2+-entry pathway, thereby producing sustained increases in intracellular Ca2+ concentration ([Ca2+]i) that drive acrosome reactions. Our results show that Trp2 is essential for the activation of sustained Ca2+ influx into sperm by ZP3.
在许多细胞中,受体激活会引发持续的钙离子内流,这在信号转导中至关重要。哺乳动物的瞬时受体电位(Trp)蛋白与果蝇光感受器细胞的Trp蛋白同源,已成为介导这种离子内流的离子通道的候选亚基。由于过表达,这些蛋白会产生阳离子电流,该电流在细胞内钙离子储存耗尽后或通过受体激活后打开。然而,由于缺乏选择性拮抗剂,确定内源性Trp蛋白在信号转导中的作用变得复杂。在这里,我们研究精子与卵子相互作用过程中Trp的功能。精子顶体反应是一种依赖钙离子的分泌事件,必须在受精前完成。在哺乳动物中,胞吐作用在配子接触期间由ZP3触发,ZP3是卵子细胞外基质或透明带(ZP)的一种糖蛋白成分。ZP3激活三聚体G蛋白和磷脂酶C,并通过T型钙离子通道使钙离子短暂流入精子。这些早期反应促进了第二条钙离子内流途径,从而使细胞内钙离子浓度([Ca2+]i)持续升高,进而驱动顶体反应。我们的结果表明,Trp2对于ZP3激活精子中持续的钙离子内流至关重要。