Ito Megumu, Imai Misa, Muraki Miho, Miyado Kenji, Qin Junwen, Kyuwa Shigeru, Yoshikawa Yasuhiro, Hosoi Yoshihiko, Saito Hidekazu, Takahashi Yuji
Division of Reproductive Medicine, Department of Perinatal Medicine and Maternal Care, National Center for Child Health and Development, Tokyo, Japan.
Aging (Albany NY). 2011 Dec;3(12):1213-23. doi: 10.18632/aging.100418.
We previously reported that GSTT1 was upregulated in human granulosa cells during aging and that activation and localization of p38 MAPK was changed in parallel. Although oxidative stress is responsible for these changes, the age-associated expression of GSTT1 regulated by MAPKs and the role of GSTT1 in aged granulosa cells remain unclear. Therefore, we examined the relationship between the expression of GSTT1 and MAPK signaling pathways using human granulosa-like KGN cells stimulated with H(2)O(2) in the presence or absence of various MAPK inhibitors. Interestingly, H(2)O(2)-induced GSTT1 was only inhibited by a p38 inhibitor. An inhibitor of MK2, a downstream regulator of p38, also diminished H(2)O(2)-induced GSTT1 upregulation. Notably, both p38 and MK2 were significantly inactivated in cells carrying an shRNA construct of GSTT1 (∆GSTT1 cells), suggesting that the p38-MK2 pathway is essential for age-associated upregulation of GSTT1. The relevance of GSTT1 in mitochondrial activity was then determined. ∆GSTT1 cells displayed enhanced polarization of mitochondrial membrane potential without increasing the apoptosis, suggesting that the age-associated upregulation of GSTT1 may influence the mitochondrial activity of granulosa cells.
我们之前报道过,谷胱甘肽硫转移酶T1(GSTT1)在人类颗粒细胞衰老过程中上调,并且p38丝裂原活化蛋白激酶(p38 MAPK)的激活和定位也相应改变。尽管氧化应激是这些变化的原因,但由丝裂原活化蛋白激酶(MAPKs)调节的GSTT1与年龄相关的表达以及GSTT1在衰老颗粒细胞中的作用仍不清楚。因此,我们使用人颗粒细胞样KGN细胞,在有或没有各种MAPK抑制剂的情况下,用H₂O₂刺激,研究了GSTT1表达与MAPK信号通路之间的关系。有趣的是,H₂O₂诱导的GSTT1仅被p38抑制剂抑制。p38的下游调节因子MK2的抑制剂也减少了H₂O₂诱导的GSTT1上调。值得注意的是,在携带GSTT1的短发夹RNA构建体的细胞(∆GSTT1细胞)中,p38和MK2均显著失活,这表明p38-MK2通路对于GSTT1与年龄相关的上调至关重要。然后确定了GSTT1在线粒体活性中的相关性。∆GSTT1细胞显示线粒体膜电位极化增强,而细胞凋亡没有增加,这表明GSTT1与年龄相关的上调可能影响颗粒细胞的线粒体活性。