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茫然基因对于斑马鱼视网膜中晚期细胞类型发育和视网膜细胞维持是必需的。

dazed gene is necessary for late cell type development and retinal cell maintenance in the zebrafish retina.

作者信息

Perkins Brian D, Nicholas Claire S, Baye Lisa M, Link Brian A, Dowling John E

机构信息

Department of Molecular and Cellular Biology, Harvard University, Cambridge, Massachusetts, USA.

出版信息

Dev Dyn. 2005 Jun;233(2):680-94. doi: 10.1002/dvdy.20375.

Abstract

Several molecules, such as growth factors and neurotrophic factors, are required both for the differentiation of specific retinal cell types and the long-term cell survival of all retinal neurons. As diffusible factors, these molecules act non-cell-autonomously. Here, we describe the loss of function phenotype for dazed (dzd), a gene that acts cell-autonomously for retinal cell survival and affects the differentiation of rod photoreceptors and the Muller glia. By 3 days after fertilization, dazed mutant embryos have small eyes and slight heart edema. Acridine orange staining indicated a significant degree of retinal cell death occurring by 48 hr after fertilization, and histological analysis revealed that dying cells were found in the inner and outer nuclear layers and near the marginal zones. Although molecular and morphological differentiation of the inner retina and cone photoreceptors occurred, rod photoreceptors failed to differentiate beyond a small patch in the ventral retina and rod precursors failed to respond to exogenously added retinoic acid, which normally potentiated rod differentiation. Mosaic analysis indicated that the dazed gene acts cell-autonomously for rod production and cell survival, as dazed clones failed to produce rods outside the ventral patch and dazed cells were not maintained in wild-type hosts. Raising mutants under constant light resulted in severe retinal degeneration, whereas raising embryos under constant darkness did not provide any additional protection from cell death. Behavioral analysis showed that a subpopulation of adult fish that were heterozygous for the dazed mutation had elevated visual thresholds and were night blind, suggesting that dazed may also be required for long-term dim-light vision. Taken together, our studies suggest a role for the dazed gene in rod and Muller cell development and overall retinal cell survival and maintenance.

摘要

几种分子,如生长因子和神经营养因子,对于特定视网膜细胞类型的分化以及所有视网膜神经元的长期细胞存活都是必需的。作为可扩散因子,这些分子以非细胞自主的方式发挥作用。在这里,我们描述了dazed(dzd)基因的功能缺失表型,该基因在视网膜细胞存活方面以细胞自主的方式发挥作用,并影响视杆光感受器和穆勒胶质细胞的分化。受精后3天,dazed突变胚胎眼睛小且有轻微的心脏水肿。吖啶橙染色表明,受精后48小时发生了显著程度的视网膜细胞死亡,组织学分析显示,死亡细胞出现在内核层和外核层以及边缘区域附近。尽管视网膜内层和视锥光感受器发生了分子和形态学分化,但视杆光感受器未能在腹侧视网膜的一个小区域之外分化,视杆前体细胞也未能对外源性添加的视黄酸作出反应,而视黄酸通常会增强视杆分化。镶嵌分析表明,dazed基因在视杆产生和细胞存活方面以细胞自主的方式发挥作用,因为dazed克隆在腹侧区域之外未能产生视杆,并且dazed细胞在野生型宿主中无法维持。在持续光照下饲养突变体导致严重的视网膜退化,而在持续黑暗中饲养胚胎并不能提供任何额外的细胞死亡保护。行为分析表明,dazed突变杂合的成年鱼亚群视觉阈值升高且夜盲,这表明dazed对于长期弱光视觉可能也是必需的。综上所述,我们的研究表明dazed基因在视杆和穆勒细胞发育以及整体视网膜细胞存活和维持中发挥作用。

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