Aparicio I M, Bragado M J, Gil M C, Garcia-Herreros M, Gonzalez-Fernandez L, Tapia J A, Garcia-Marin L J
Departamento de Fisiología, Universidad de Extremadura, Cáceres, Spain.
Mol Reprod Dev. 2007 Aug;74(8):1035-42. doi: 10.1002/mrd.20663.
Phosphatidylinositol 3-kinase (PI3-K) plays an important role in cell survival in somatic cells and recent data pointed out a role for this kinase in sperm capacitation and acrosome reaction (AR). This study was undertaken to evaluate the role of PI3-K pathway on porcine spermatozoa capacitation, AR, and viability using two unrelated PI3-K inhibitors, LY294002 and wortmannin. In boar spermatozoa, we have identified the presence of PDK1, PKB/Akt, and PTEN, three of the main key components of the PI3-K pathway. Incubation of boar sperm in a capacitating medium (TCM) caused a significant increase in the percentage of capacitated (25 +/- 2 to 34 +/- 1% P < 0.05, n = 6) and acrosome reacted (1 +/- 1 to 11 +/- 1% P < 0.01, n = 6) spermatozoa compared with sperm in basal medium (TBM). Inhibition of PI3-K did affect neither the capacitation status nor AR nor protein p32 tyrosine phosphorylation of boar spermatozoa incubated in TBM or TCM. Boar sperm viability in TBM was significantly decreased by 40 and 20% after pretreatment with LY294002 or wortmannin, respectively. Similar results were observed after incubation of boar spermatozoa in TCM. Treatment of boar spermatozoa with the analog of cAMP, 8Br-cAMP significantly prevented the reduction on sperm viability. Our results provide evidence for an important role of the PI3-K pathway in the regulation of boar sperm viability and suggests that other signaling pathways different from PI3-K must be activated downstream of cAMP to contribute to regulation of sperm viability. Finally, in our conditions the PI3-K pathway seems not related with boar sperm capacitation or AR.
磷脂酰肌醇3激酶(PI3-K)在体细胞的细胞存活中发挥重要作用,最近的数据指出该激酶在精子获能和顶体反应(AR)中也发挥作用。本研究旨在使用两种不相关的PI3-K抑制剂LY294002和渥曼青霉素,评估PI3-K信号通路在猪精子获能、顶体反应和活力方面的作用。在公猪精子中,我们已确定PI3-K信号通路的三个主要关键成分PDK1、PKB/Akt和PTEN的存在。与基础培养基(TBM)中的精子相比,将公猪精子在获能培养基(TCM)中孵育导致获能精子(25±2至34±1%,P<0.05,n = 6)和顶体反应精子(1±1至11±1%,P<0.01,n = 6)的百分比显著增加。PI3-K的抑制对在TBM或TCM中孵育的公猪精子的获能状态、顶体反应或蛋白p32酪氨酸磷酸化均无影响。用LY294002或渥曼青霉素预处理后,TBM中公猪精子的活力分别显著降低了40%和20%。在TCM中孵育公猪精子后也观察到类似结果。用cAMP类似物8Br-cAMP处理公猪精子可显著防止精子活力的降低。我们的结果为PI3-K信号通路在调节公猪精子活力中的重要作用提供了证据,并表明在cAMP下游必须激活不同于PI3-K的其他信号通路,以有助于调节精子活力。最后,在我们的实验条件下,PI3-K信号通路似乎与公猪精子获能或顶体反应无关。