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爪蟾虹膜和非洲爪蟾角膜晶状体再生过程中Pax-6和Prox 1的表达:胚胎晶状体发育共有遗传程序的证据

Pax-6 and Prox 1 expression during lens regeneration from Cynops iris and Xenopus cornea: evidence for a genetic program common to embryonic lens development.

作者信息

Mizuno N, Mochii M, Yamamoto T S, Takahashi T C, Eguchi G, Okada T S

机构信息

Biohistory Research Hall, Takatuki, Osaka, Japan.

出版信息

Differentiation. 1999 Nov;65(3):141-9. doi: 10.1046/j.1432-0436.1999.6530141.x.

Abstract

Lens regeneration from non-lens ocular tissues has been well documented in amphibians, from the dorsal iris in the newt and from the outer cornea in Xenopus. To understand the early molecular events which govern lens regeneration, we examined the expression of two early marker genes of normal lens development, Pax-6 and Prox 1. In both Cynops (newt) iris and Xenopus cornea, Pax-6 is expressed soon after lentectomy in a region broader than that giving rise to the regenerating lens, indicative of an important role for Pax-6 in determination of the regeneration potential. Then Prox 1 expression begins within the Pax-6-expressing tissue, and these Prox 1-expressing cells give rise to the regenerating lens. This sequence of events also takes place in the lens placode of the embryo, indicating that the presence of the same genetic program operates in both embryonic lens development and lens regeneration, at least partly. In the Cynops iris, Pax-6 expression occurs initially in the entire marginal region of the iris after lentectomy but then becomes restricted to the dorsal region. Further studies are expected to elucidate the mechanism of this long-standing problem of the dorsal-restriction of lens regeneration from the newt iris.

摘要

在两栖动物中,非晶状体眼组织再生晶状体的现象已有充分记载,如蝾螈的背侧虹膜和非洲爪蟾的外角膜可再生晶状体。为了解调控晶状体再生的早期分子事件,我们检测了正常晶状体发育的两个早期标记基因Pax - 6和Prox 1的表达情况。在东方蝾螈(蝾螈)虹膜和非洲爪蟾角膜中,晶状体切除术后Pax - 6在比再生晶状体发生区域更广泛的区域很快表达,这表明Pax - 6在确定再生潜能中起重要作用。然后Prox 1在表达Pax - 6的组织中开始表达,这些表达Prox 1的细胞形成再生晶状体。这一系列事件也发生在胚胎的晶状体原基中,表明至少部分相同的遗传程序在胚胎晶状体发育和晶状体再生中都起作用。在东方蝾螈虹膜中,晶状体切除术后Pax - 6最初在虹膜的整个边缘区域表达,但随后局限于背侧区域。预计进一步的研究将阐明蝾螈虹膜晶状体再生背侧限制这一长期存在问题的机制。

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