Mak Keri Man Chi, Lo Amy Cheuk Yin, Lam Amy Ka Man, Yeung Patrick Ka Kit, Ko Ben Chi Bun, Chung Stephen Sum Man, Chung Sookja Kim
Department of Anatomy, Li Ka Shing Faculty of Medicine, Chinese University of Hong Kong, Hong Kong, SAR, China.
Neurosignals. 2012;20(4):237-51. doi: 10.1159/000331899. Epub 2012 Jan 18.
Nuclear factor of activated T cells 5 (NFAT5) has been implicated in regulating several genes that are thought to be neuroprotective in ischemic injury. Because of the embryonic lethality of NFAT5 knockout (NFAT5(-/-)) mice, the heterozygous (NFAT5(+/-)) mice were used to study the in vivo role of NFAT5 in hypoxia/ischemia (H/I) condition. The NFAT5(+/-) mice exhibited more severe neurological deficits, larger infarct area and edema formation associated with increased aquaporin 4 expressions in the brain. Under in vitro H/I condition, increased apoptotic cell death was found in NFAT5(-/-) neurons. Moreover, SMIT, a downstream to NFAT5, was upregulated in NFAT5(+/+) neurons, while the SMIT level could not be upregulated in NFAT5(-/-) neurons under H/I condition. The elevation of reactive oxygen species generation in NFAT5(-/-) neurons under H/I condition further confirmed that NFAT5(-/-) neurons were more susceptible to oxidative stress. The present study demonstrated that activation of NFAT5 and its downstream SMIT induction is important in protecting neurons from ischemia-induced oxidative stress.
活化T细胞核因子5(NFAT5)与调控多个被认为在缺血性损伤中具有神经保护作用的基因有关。由于NFAT5基因敲除(NFAT5(-/-))小鼠存在胚胎致死性,因此使用杂合子(NFAT5(+/-))小鼠来研究NFAT5在缺氧/缺血(H/I)条件下的体内作用。NFAT5(+/-)小鼠表现出更严重的神经功能缺损、更大的梗死面积以及与脑内水通道蛋白4表达增加相关的水肿形成。在体外H/I条件下,发现NFAT5(-/-)神经元的凋亡细胞死亡增加。此外,NFAT5的下游分子SMIT在NFAT5(+/+)神经元中上调,而在H/I条件下,NFAT5(-/-)神经元中的SMIT水平无法上调。H/I条件下NFAT5(-/-)神经元中活性氧生成的增加进一步证实了NFAT5(-/-)神经元对氧化应激更敏感。本研究表明,NFAT5的激活及其下游SMIT的诱导对于保护神经元免受缺血诱导的氧化应激至关重要。