Li Guiyuan, Anderson Robert E, Tomita Hiroshi, Adler Ruben, Liu Xiaochun, Zack Donald J, Rajala Raju V S
Department of Cell Biology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73104, USA.
J Neurosci. 2007 Jan 3;27(1):203-11. doi: 10.1523/JNEUROSCI.0445-06.2007.
The Akt kinases mediate cell survival through phosphorylation and inactivation of apoptotic machinery components. Akt signaling provides a trophic signal for transformed retinal neurons in culture, but the in vivo role of Akt activity is unknown. In this study, we found that all three Akt isoforms were expressed in rod photoreceptor cells. We investigated the functional roles of Akt1 and Akt2, two of the isoforms of Akt, and their biological significance in light-induced retinal degeneration. Consistent with the hypothesis that Akt activity is important to circumvent stress-induced apoptosis, herein we report the novel finding that rod photoreceptor cells in Akt2 knock-out mice exhibited a significantly greater sensitivity to stress-induced cell death than rods in heterozygous or wild-type mice. Under similar conditions, Akt1 deletion had no effect on the retina. The presence of three Akt isoforms in the retina is suggestive of a functional redundancy; however, our studies clearly demonstrate that, under stress, Akt1 and Akt3 cannot complement the specific survival signals driven by Akt2. Furthermore, we show that Akt2 is specially activated is response to light stress. The results presented in this study provide the first direct evidence that Akt2 has a nonredundant neuroprotective role in photoreceptor survival and maintenance.
Akt激酶通过对凋亡机制成分进行磷酸化并使其失活来介导细胞存活。Akt信号传导为培养中的转化视网膜神经元提供营养信号,但Akt活性在体内的作用尚不清楚。在本研究中,我们发现所有三种Akt亚型均在视杆光感受器细胞中表达。我们研究了Akt的两种亚型Akt1和Akt2的功能作用及其在光诱导的视网膜变性中的生物学意义。与Akt活性对于规避应激诱导的细胞凋亡很重要这一假设一致,在此我们报告了一项新发现,即Akt2基因敲除小鼠中的视杆光感受器细胞比杂合子或野生型小鼠中的视杆细胞对应激诱导的细胞死亡表现出明显更高的敏感性。在相似条件下,Akt1基因缺失对视网膜没有影响。视网膜中存在三种Akt亚型提示了功能冗余;然而,我们的研究清楚地表明,在应激状态下,Akt1和Akt3不能补充由Akt2驱动的特定存活信号。此外,我们表明Akt2会因应光应激而被特异性激活。本研究给出的结果提供了首个直接证据,表明Akt2在光感受器存活和维持中具有非冗余的神经保护作用。