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Six3基因失活揭示了其在脊椎动物眼睛形成和模式化过程中的关键作用。

Six3 inactivation reveals its essential role for the formation and patterning of the vertebrate eye.

作者信息

Carl Matthias, Loosli Felix, Wittbrodt Joachim

机构信息

Developmental Biology Programme, EMBL-Heidelberg, Meyerhofstr. 1, Germany.

出版信息

Development. 2002 Sep;129(17):4057-63. doi: 10.1242/dev.129.17.4057.

Abstract

The establishment of retinal identity and the subsequent patterning of the optic vesicle are the key steps in early vertebrate eye development. To date little is known about the nature and interaction of the genes controlling these steps. So far few genes have been identified that, when over-expressed, can initiate ectopic eye formation. Of note is Six3, which is expressed exclusively in the anterior neural plate. However, 'loss of function' analysis has not been reported. Using medaka fish, we show that vertebrate Six3 is necessary for patterning of the anterior neuroectoderm including the retina anlage. Inactivation of Six3 function by morpholino knock-down results in the lack of forebrain and eyes. Corroborated by gain-of-function experiments, graded interference reveals an additional role of Six3 in the proximodistal patterning of the optic vesicle. During both processes of vertebrate eye formation, Six3 cooperates with Pax6.

摘要

视网膜特性的确立以及随后视泡的模式形成是早期脊椎动物眼睛发育的关键步骤。迄今为止,对于控制这些步骤的基因的性质和相互作用知之甚少。到目前为止,几乎没有已鉴定出的基因,当它们过度表达时,能够引发异位眼的形成。值得注意的是Six3,它仅在前神经板中表达。然而,尚未有关于其“功能丧失”分析的报道。利用青鳉鱼,我们表明脊椎动物Six3对于包括视网膜原基在内的前神经外胚层的模式形成是必需的。通过吗啉代敲低使Six3功能失活会导致前脑和眼睛缺失。功能获得实验证实,分级干扰揭示了Six3在视泡的近远轴模式形成中的额外作用。在脊椎动物眼睛形成的两个过程中,Six3都与Pax6协同作用。

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