The Mina and Everard Goodman Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan 52900, Israel.
Reproduction. 2010 Jul;140(1):43-56. doi: 10.1530/REP-09-0314. Epub 2010 May 4.
In order to acquire fertilization competence, spermatozoa have to undergo biochemical changes in the female reproductive tract, known as capacitation. Signaling pathways that take place during the capacitation process are much investigated issue. However, the role and regulation of phosphatidylinositol 3-kinase (PI3K) in this process are still not clear. Previously, we reported that short-time activation of protein kinase A (PRKA, PKA) leads to PI3K activation and protein kinase C(alpha)(PRKCA, PKC(alpha)) inhibition. In the present study, we found that during the capacitation PI3K phosphorylation/activation increases. PI3K activation was PRKA dependent, and down-regulated by PRKCA. PRKCA is found to be highly active at the beginning of the capacitation, conditions in which PI3K is not active. Moreover, inhibition of PRKCA causes significant activation of PI3K. Similar activation of PI3K is seen when the phosphatase PPP1 is blocked suggesting that PPP1 regulates PI3K activity. We found that during the capacitation PRKCA and PPP1CC2 (PP1gamma2) form a complex, and the two enzymes were degraded during the capacitation, suggesting that this degradation enables the activation of PI3K. This degradation is mediated by PRKA, indicating that in addition to the direct activation of PI3K by PRKA, this kinase can enhance PI3K phosphorylation indirectly by enhancing the degradation and inactivation of PRKCA and PPP1CC2.
为了获得受精能力,精子必须在雌性生殖道中经历生化变化,即获能。获能过程中发生的信号通路是一个研究较多的问题。然而,磷脂酰肌醇 3-激酶(PI3K)在这个过程中的作用和调节仍然不清楚。以前,我们报道过短时间激活蛋白激酶 A(PRKA,PKA)会导致 PI3K 激活和蛋白激酶 C(alpha)(PRKCA,PKC(alpha))抑制。在本研究中,我们发现,在获能过程中,PI3K 的磷酸化/激活增加。PI3K 的激活依赖于 PRKA,并受 PRKCA 调节。PKC(alpha)在获能开始时活性很高,而此时 PI3K 不活跃。此外,抑制 PKC(alpha)会导致 PI3K 的显著激活。当磷酸酶 PPP1 被抑制时,也会看到类似的 PI3K 激活,这表明 PPP1 调节 PI3K 活性。我们发现,在获能过程中,PRKCA 和 PPP1CC2(PP1gamma2)形成复合物,并且这两种酶在获能过程中被降解,这表明这种降解使 PI3K 激活成为可能。这种降解是由 PRKA 介导的,这表明除了 PRKA 对 PI3K 的直接激活外,这种激酶还可以通过增强 PRKCA 和 PPP1CC2 的降解和失活来间接增强 PI3K 的磷酸化。