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Progesterone utilizes the PI3K-AKT pathway in human spermatozoa to regulate motility and hyperactivation but not acrosome reaction

机译:孕酮利用人精子中的PI3K-AKT途径调节运动力和过度激活,但不调节顶体反应

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Progesterone is a physiologic regulator of sperm hyperactivation and acrosome reaction and it does so by activating a range of kinases present in the spermatozoa. In the present study, the involvement of the AKT- phosphatidylinositol 3-kinase (PI3K) signaling pathway in mediating progesterone response in human spermatozoa was investigated. In capacitated spermatozoa, progesterone transiently and concentration dependently lead to phosphorylation of AKT at both Thr 308 and Ser 473 in the tail region. This phosphorylation was inhibited by the PI3K inhibitor wortmannin, suggesting that progesterone leads to activation of PI3K-AKT pathway. The activation of AKT in response to progesterone is calcium dependent and the CatSper channel inhibitor mibefradil significantly reduced progesterone mediated AKT phosphorylation. Preincubation of spermatozoa with wortmannin inhibited the progesterone mediated increase in tyrosine phosphorylation and also attenuated the increase in number of motile, progressively motile and hyperactive spermatozoa but not the number of acrosome reacted spermatozoa. These observations imply that progesterone via CatSper activates the PI3K-AKT pathway required for motility and hyperactivation but not for acrosome reaction.
机译:孕酮是精子过度活化和顶体反应的生理调节剂,它通过激活精子中存在的一系列激酶来实现。在本研究中,研究了AKT-磷脂酰肌醇3激酶(PI3K)信号通路在介导人类精子中孕酮反应中的作用。在有能力的精子中,孕酮瞬时和浓度依赖性地导致尾巴区域的Thr 308和Ser 473处的AKT磷酸化。该磷酸化被PI3K抑制剂渥曼青霉素抑制,表明孕酮导致PI3K-AKT途径的活化。响应孕酮的AKT激活是钙依赖性的,CatSper通道抑制剂米贝拉地尔显着降低了孕酮介导的AKT磷酸化。精子与渥曼青霉素的预孵育抑制了孕酮介导的酪氨酸磷酸化的增加,并且还减弱了运动的,逐渐运动的和过度活跃的精子数量的增加,但是没有顶体反应的精子数量的增加。这些观察结果表明,通过CatSper的孕酮激活了运动和过度激活所必需的PI3K-AKT途径,但对于顶体反应却没有激活。

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