Wang Dan, Hu Jie, Bobulescu I Alexandru, Quill Timothy A, McLeroy Paul, Moe Orson W, Garbers David L
Cecil H. and Ida Green Center for Reproductive Biology Sciences, Department of Pharmacology, University of Texas Southwestern Medical Center, 6001 Forest Park Road, Dallas, TX 75390-9051, USA.
Proc Natl Acad Sci U S A. 2007 May 29;104(22):9325-30. doi: 10.1073/pnas.0611296104. Epub 2007 May 17.
We previously identified a sperm-specific Na(+)/H(+) exchanger (sNHE) principally localized to the flagellum. Disruption of the sNHE gene in mice resulted in absolute male infertility associated with a complete loss of sperm motility. Here, we show that the sNHE-null spermatozoa fail to develop the cAMP-dependent protein tyrosine phosphorylation that coincides with the functional maturation occurring upon incubation in capacitating conditions in vitro. Both the sperm motility defect and the lack of induced protein tyrosine phosphorylation are rescued by the addition of cell-permeable cAMP analogs, suggesting that cAMP metabolism is impaired in spermatozoa lacking sNHE. Our analyses of the bicarbonate-dependent soluble adenylyl cyclase (sAC) signaling pathway in sNHE-null sperm cells reveal that sNHE is required for the expression of full-length sAC, and that it is important for the bicarbonate stimulation of sAC activity in spermatozoa. Furthermore, both codependent expression and coimmunoprecipitation experiments indicate that sNHE and sAC associate with each other. Thus, these two proteins appear to be components of a signaling complex at the sperm flagellar plasma membrane. We propose that the formation of this complex efficiently modulates intracellular pH and bicarbonate levels through the rapid and effective control of sAC and sNHE activities to facilitate sperm motility regulation.
我们之前鉴定出一种主要定位于鞭毛的精子特异性钠氢交换体(sNHE)。小鼠中sNHE基因的破坏导致绝对的雄性不育,伴有精子运动能力的完全丧失。在此,我们表明sNHE基因缺失的精子无法产生与体外获能培养时发生的功能成熟相一致的cAMP依赖性蛋白酪氨酸磷酸化。添加细胞可渗透的cAMP类似物可挽救精子运动缺陷和诱导的蛋白酪氨酸磷酸化的缺乏,这表明缺乏sNHE的精子中cAMP代谢受损。我们对sNHE基因缺失的精子细胞中碳酸氢盐依赖性可溶性腺苷酸环化酶(sAC)信号通路的分析表明,全长sAC的表达需要sNHE,并且它对精子中sAC活性的碳酸氢盐刺激很重要。此外,共依赖性表达和共免疫沉淀实验均表明sNHE和sAC相互关联。因此,这两种蛋白似乎是精子鞭毛质膜上信号复合物的组成成分。我们提出,通过对sAC和sNHE活性的快速有效控制,该复合物的形成可有效调节细胞内pH和碳酸氢盐水平,以促进精子运动调节。