Chow Robert L, Volgyi Bela, Szilard Rachel K, Ng David, McKerlie Colin, Bloomfield Stewart A, Birch David G, McInnes Roderick R
Program in Developmental Biology, Research Institute, Hospital for Sick Children, Toronto, Ontario, Canada M5G 1X8.
Proc Natl Acad Sci U S A. 2004 Feb 10;101(6):1754-9. doi: 10.1073/pnas.0306520101. Epub 2004 Jan 26.
Retinal bipolar cells are interneurons that transmit visual signals from photoreceptors to ganglion cells. Although the visual pathways mediated by bipolar cells have been well characterized, the genes that regulate their development and function are largely unknown. To determine the role in bipolar cell development of the homeobox gene Vsx1, whose retinal expression is restricted to a major subset of differentiating and mature cone bipolar (CB) cells, we targeted the gene in mice. Bipolar cell fate was not altered in the absence of Vsx1 function, because the pan-bipolar markers Chx10 and Ret-B1 continued to be expressed in inner nuclear layer neurons labeled by the Vsx1-targeting reporter gene, tauLacZ. The specification, number, and gross morphology of the subset of on-center and off-center (OFF)-CB cells defined by tauLacZ expression from the Vsx1 locus were also normal in Vsx1(tauLacZ)/Vsx1(tauLacZ) mice. However, the terminal differentiation of OFF-CB cells in the retina of Vsx1(tauLacZ)/Vsx1(tauLacZ) mice was incomplete, as demonstrated by a substantial reduction in the expression of at least four markers (recoverin, NK3R, Neto1, and CaB5) for these interneurons. These molecular abnormalities were associated with defects in retinal function and documented by electroretinography and in vitro ganglion cell recordings specific to cone visual signaling. In particular, there was a general reduction in the light-mediated activity of OFF, but not on-center, ganglion cells. Thus, Vsx1 is required for the late differentiation and function of OFF-CB cells and is associated with a heritable OFF visual pathway-specific retinal defect.
视网膜双极细胞是将视觉信号从光感受器传递至神经节细胞的中间神经元。尽管由双极细胞介导的视觉通路已得到充分表征,但其发育和功能的调控基因在很大程度上仍不为人所知。为了确定同源框基因Vsx1在双极细胞发育中的作用,该基因在视网膜中的表达仅限于分化和成熟的视锥双极(CB)细胞的一个主要亚群,我们在小鼠中对该基因进行了靶向操作。在缺乏Vsx1功能的情况下,双极细胞命运并未改变,因为泛双极标记物Chx10和Ret - B1在由Vsx1靶向报告基因tauLacZ标记的内核层神经元中持续表达。由Vsx1基因座的tauLacZ表达所定义的中心型和离中心型(OFF) - CB细胞亚群的特化、数量和总体形态在Vsx1(tauLacZ)/Vsx1(tauLacZ)小鼠中也正常。然而,Vsx1(tauLacZ)/Vsx1(tauLacZ)小鼠视网膜中OFF - CB细胞的终末分化并不完全,这些中间神经元的至少四种标记物(恢复蛋白、NK3R、Neto1和CaB5)的表达大幅降低证明了这一点。这些分子异常与视网膜功能缺陷相关,并通过视网膜电图和特定于视锥视觉信号的体外神经节细胞记录得以证实。特别是,OFF神经节细胞(而非中心型神经节细胞)的光介导活性普遍降低。因此,Vsx1是OFF - CB细胞晚期分化和功能所必需的,并且与一种遗传性的OFF视觉通路特异性视网膜缺陷相关。