Xu Fan, Huang Hui, Wu Yu, Lu Lu, Jiang Li, Chen Lifei, Zeng Siming, Li Li, Li Min
Department of Ophthalmology, People's Hospital of Guangxi Zhuang Autonomous Region, Nanning, 530021, Guangxi, People's Republic of China.
J Mol Histol. 2014 Oct;45(5):565-71. doi: 10.1007/s10735-014-9579-y. Epub 2014 Jun 20.
GTP-binding protein Gem, a member protein of the Ras superfamily, can regulate actin cytoskeleton reorganization mediated by Rho-associated coiled-coil-containing protein kinase (ROCK). One attractive activity of the ROCK is playing a potential role in physiological and pathological process in retinal ganglion cells (RGCs) apoptosis. However, the function of Gem in retina is still with limited understanding. To investigate whether Gem is involved in optic nerve injury, we performed an optic nerve crush (ONC) model in adult rats. Western blot analysis indicated that Gem was significantly increased in the retina at the 3rd day after ONC. Meanwhile, double-immunofluorescent staining showed that Gem expression was mainly up-regulated in ganglion cell layer and co-localized with NeuN (a marker of RGCs). Additionally, the co-localizations of Gem/active-caspase-3 and Gem/TUNEL-positive cells were detected in RGCs. Furthermore, the expression of active-caspase-3 and TUNEL-positive cells was parallel with that of Gem. Finally, expression pattern of ROCK family (only ROCK2 but not ROCK1) was increased in the differentiated process, which was collected with the expression of GEM and active-caspase-3. Based on the present results, it is suggested that Gem might play a crucial role in RGCs apoptosis after ONC, which might be involved in ROCK pathway.
GTP结合蛋白Gem是Ras超家族的成员蛋白,可调节由Rho相关卷曲螺旋蛋白激酶(ROCK)介导的肌动蛋白细胞骨架重组。ROCK的一个引人关注的活性是在视网膜神经节细胞(RGCs)凋亡的生理和病理过程中发挥潜在作用。然而,人们对Gem在视网膜中的功能仍了解有限。为了研究Gem是否参与视神经损伤,我们在成年大鼠中建立了视神经挤压(ONC)模型。蛋白质免疫印迹分析表明,ONC后第3天视网膜中的Gem显著增加。同时,双重免疫荧光染色显示Gem表达主要在神经节细胞层上调,并与NeuN(RGCs的标志物)共定位。此外,在RGCs中检测到Gem/活性半胱天冬酶-3和Gem/TUNEL阳性细胞的共定位。此外,活性半胱天冬酶-3和TUNEL阳性细胞的表达与Gem的表达平行。最后,ROCK家族(仅ROCK2而非ROCK1)的表达模式在分化过程中增加,这与GEM和活性半胱天冬酶-3的表达一致。基于目前的结果,提示Gem可能在ONC后RGCs凋亡中起关键作用,这可能与ROCK途径有关。