Xie Wenlian, Yan Run-Tao, Ma Wenxin, Wang Shu-Zhen
Department of Ophthalmology, University of Alabama at Birmingham, Birmingham, Alabama 35233, USA.
Invest Ophthalmol Vis Sci. 2004 Sep;45(9):2922-8. doi: 10.1167/iovs.04-0280.
The molecular mechanism underlying retinal ganglion cell (RGC) differentiation is not fully understood. In this study, the role of the basic helix-loop-helix (bHLH) genes ath5 and NSCL1 in RGC differentiation was examined, by testing whether their coexpression would promote RGC differentiation to a greater extent than either gene alone.
The replication-competent avian RCAS retrovirus was used to coexpress ath5 and NSCL1 through an internal ribosomal entry site. The effect of the coexpression on RGC differentiation was assayed in vivo in the developing chick retina and in vitro in RPE cell cultures derived from day 6 chick embryos.
Coexpression of ath5 and NSCL1 in RPE cells cultured in the presence of bFGF promoted RPE transdifferentiation toward RGCs, and the degree of transdifferentiation was much higher than with either gene alone. Cells expressing RGC markers, including RA4, calretinin, and two neurofilament-associated proteins, displayed processes that were remarkably long and thin and often had numerous branches, characteristics of long-projecting RGCs. In the developing chick retina, retroviral expression of NSCL1 resulted in a moderate increase in the number of RGCs, results similar to retroviral expression of ath5. Coexpression of ath5 and NSCL1 yielded increases in RGCs greater than the sum of their increases when expressed separately.
Both in vitro and in vivo data indicate that the combination of ath5 and NSCL1 promotes RGC differentiation to a greater degree than either gene alone, suggesting a synergism between ath5 and NSCL1 in advancing RGC development.
视网膜神经节细胞(RGC)分化的分子机制尚未完全明确。在本研究中,通过测试碱性螺旋-环-螺旋(bHLH)基因ath5和NSCL1的共表达是否比单独表达任一基因更能促进RGC分化,来研究它们在RGC分化中的作用。
利用具有复制能力的禽RCAS逆转录病毒,通过内部核糖体进入位点共表达ath5和NSCL1。在发育中的鸡视网膜中进行体内实验,以及在源自6日龄鸡胚的RPE细胞培养物中进行体外实验,以检测共表达对RGC分化的影响。
在存在bFGF的情况下培养的RPE细胞中共表达ath5和NSCL1,可促进RPE向RGC的转分化,且转分化程度远高于单独表达任一基因。表达包括RA4、钙视网膜蛋白和两种神经丝相关蛋白在内的RGC标志物的细胞,其突起显著细长且常有许多分支,具有长投射RGC的特征。在发育中的鸡视网膜中,NSCL1的逆转录病毒表达导致RGC数量适度增加,结果与ath5的逆转录病毒表达相似。ath5和NSCL1的共表达使RGC数量的增加大于它们单独表达时增加量的总和。
体外和体内数据均表明,ath5和NSCL1的组合比单独任一基因更能促进RGC分化,提示ath5和NSCL1在促进RGC发育过程中存在协同作用。