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The perplexed and confused mutations affect distinct stages during thetransition from proliferating to post-mitotic cells within the zebrafishretina

机译:困惑和困惑的突变影响斑马鱼视网膜内从增生到有丝分裂后细胞过渡的不同阶段

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To identify and study genes essential for vertebrate retinal development, we are screening zebrafish embryos for mutations that disrupt retinal histogenesis. Key steps in retinogenesis include withdrawal from mitosis by multipotent neuroepithelial cells, specification to particular cell types, migration to the appropriate laminar positions, and molecular and morphological differentiation. In this study, we have identified two recessive mutations that affect the transition of proliferating neuroepithelial cells to postmitotic retinal cells. Both the perplexed and confused mutant phenotypes were initially detectable when the first retinal neuroepithelial cells began to leave the cell cycle. At this time, each mutant retina showed increased cell death and a lack of morphological differentiation. Cell death was found to be apoptotic in both perplexed and confused retinas based on TUNEL analysis and activation of caspase-3. TUNEL-phosphoRb-BrdU colocalization studies indicated that the perplexed mutation caused death in cells transitioning from a proliferative to postmitotic state. For the confused mutation, TUNEL-phosphoRb-BrdU analysis revealed that only a subset of postmitotic cells were induced to activate apoptosis. Mosaic analysis demonstrated that within the retina the perplexed mutation functions noncell-autonomously. Furthermore, whole lens or eye cup transplantations indicated that the retinal defect was intrinsic to the retina. Mosaic analysis with confused embryos showed this mutation acts cell-autonomously. From these studies, we conclude that the perplexed and confused genes are essential at distinct stages during the transition from proliferating to postmitotic cells within the zebrafish retina.
机译:为了鉴定和研究脊椎动物视网膜发育必不可少的基因,我们正在筛选斑马鱼胚胎中是否存在破坏视网膜组织发生的突变。视网膜发生的关键步骤包括:多能神经上皮细胞从有丝分裂中退出,特定细胞类型的规格,迁移到合适的层状位置以及分子和形态分化。在这项研究中,我们已经确定了两个隐性突变,它们影响了增殖性神经上皮细胞向有丝分裂后视网膜细胞的过渡。当第一个视网膜神经上皮细胞开始离开细胞周期时,最初可以检测到困惑和困惑的突变表型。此时,每个突变体视网膜显示出细胞死亡增加和缺乏形态学分化。根据TUNEL分析和caspase-3的激活,发现困惑和困惑视网膜中的细胞死亡都是凋亡的。 TUNEL-phosphoRb-BrdU共定位研究表明,这种复杂的突变导致细胞死亡,细胞从增生状态过渡到有丝分裂后状态。对于混淆的突变,TUNEL-phosphoRb-BrdU分析显示只有一部分有丝分裂后细胞被激活以激活细胞凋亡。镶嵌分析表明,在视网膜内,复杂的突变非细胞自主地起作用。此外,完整的晶状体或眼罩移植表明视网膜缺陷是视网膜固有的。用混淆的胚胎进行的镶嵌分析表明该突变是细胞自主发生的。从这些研究中,我们得出结论,在斑马鱼视网膜内从增殖细胞向有丝分裂后细胞的过渡过程中,困惑和困惑的基因在不同阶段必不可少。

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