首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Src Kinase Is the Connecting Player between Protein Kinase A (PKA) Activation and Hyperpolarization through SLO3 Potassium Channel Regulation in Mouse Sperm
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Src Kinase Is the Connecting Player between Protein Kinase A (PKA) Activation and Hyperpolarization through SLO3 Potassium Channel Regulation in Mouse Sperm

机译:Src激酶是小鼠精子中SLO3钾通道调节蛋白激酶A(PKA)激活和超极化之间的连接因子。

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摘要

Plasma membrane hyperpolarization is crucial for mammalian sperm to acquire acrosomal responsiveness during capacitation. Among the signaling events leading to mammalian sperm capacitation, the immediate activation of protein kinase A plays a pivotal role, promoting the subsequent stimulation of protein tyrosine phosphorylation that associates with fertilizing capacity. We have shown previously that mice deficient in the tyrosine kinase cSrc are infertile and exhibit improper cauda epididymis development. It is therefore not clear whether lack of sperm functionality is due to problems in epididymal maturation or to the absence of cSrc in sperm. To further address this problem, we investigated the kinetics of cSrc activation using anti-Tyr(P)-416-cSrc antibodies that only recognize active cSrc. Our results provide evidence that cSrc is activated downstream of PKA and that inhibition of its activity blocks the capacitation-induced hyperpolarization of the sperm plasma membrane without blocking the increase in tyrosine phosphorylation that accompanies capacitation. In addition, we show that cSrc inhibition also blocks the agonist-induced acrosome reaction and that this inhibition is overcome by pharmacological hyperpolarization. Considering that capacitation-induced hyperpolarization is mediated by SLO3, we evaluated the action of cSrc inhibitors on the heterologously expressed SLO3 channel. Our results indicate that, similar to SLO1 K+ channels, cSrc blockers significantly decreased SLO3-mediated currents. Together, these results are consistent with findings showing that hyperpolarization of the sperm plasma membrane is necessary and sufficient to prepare the sperm for the acrosome reaction and suggest that changes in sperm membrane potential are mediated by cSrc activation.
机译:质膜超极化对于哺乳动物精子在获能过程中获得顶体反应性至关重要。在导致哺乳动物精子获能的信号转导事件中,蛋白激酶A的立即活化起着关键作用,促进了随后对蛋白酪氨酸磷酸化的刺激,从而增强了受精能力。先前我们已经证明,酪氨酸激酶cSrc缺乏的小鼠不育,并且表现出不适当的马尾附睾发育。因此,尚不清楚精子功能的缺乏是由于附睾成熟的问题还是精子中cSrc的缺乏。为了进一步解决这个问题,我们使用仅识别活性cSrc的抗Tyr(P)-416-cSrc抗体研究了cSrc激活的动力学。我们的结果提供了证据,证明cSrc在PKA的下游被激活,并且其活性的抑制作用阻止了由精子获能诱导的精子质膜超极化,而没有阻止获精后酪氨酸磷酸化的增加。此外,我们显示cSrc抑制作用还阻断了激动剂诱导的顶体反应,并且这种抑制作用可通过药理学超极化克服。考虑到获能诱导的超极化是由SLO3介导的,我们评估了cSrc抑制剂对异源表达SLO3通道的作用。我们的结果表明,类似于SLO1 K + 通道,cSrc受体阻滞剂显着降低了SLO3介导的电流。总之,这些结果与表明精子质膜的超极化是必要的,并且足以使精子为顶体反应做好准备的结果相符,并且表明精子膜电位的变化是由cSrc激活介导的。

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