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Rab11-FIP4主要在神经组织中表达,并参与斑马鱼视网膜发育过程中的增殖和分化。

Rab11-FIP4 is predominantly expressed in neural tissues and involved in proliferation as well as in differentiation during zebrafish retinal development.

作者信息

Muto Akihiko, Arai Ken-Ichi, Watanabe Sumiko

机构信息

Department of Molecular and Developmental Biology, Institute of Medical Science, University of Tokyo, 4-6-1 Shirokane-dai, Minato-ku, Tokyo 108-8639, Japan.

出版信息

Dev Biol. 2006 Apr 1;292(1):90-102. doi: 10.1016/j.ydbio.2005.12.050. Epub 2006 Feb 2.

Abstract

Rab11 family interacting protein 4 (Rab11-FIP4) was initially identified in humans as an Rab11-binding protein, but its biological function has remained unknown. We cloned the zebrafish orthologue of Rab11-FIP4 (zRab11-FIP4) and analyzed its function in vivo by using antisense morpholino. zRab11-FIP4 was expressed as 2 alternative transcripts, i.e., the longer A-form predominantly expressed in neural tissues and the shorter B-form expressed ubiquitously; and in situ hybridization revealed that the A-form was the dominant form. In the developing retina, zRab11-FIP4 was expressed in progenitors throughout the retina at early stages; and then, along with the differentiation, the expression became gradually restricted to the ganglion cell layer and ciliary marginal zone. zRab11-FIP4A knockdown embryos exhibited eye phenotypes similar to those of the shh mutant, such as a small eye with impaired cell proliferation and the delay in cell-cycle exit and differentiation of retinal progenitors. The lack of induction of p57kip2 and enhanced expression of cyclin D1 were observed in the morphant retina. Importantly, the delay in cell-cycle exit was rescued by ectopic expression of either p57Kip2 or dominant-negative PKA, suggesting that Rab11-FIP4A plays pivotal roles in retinal development by regulating Shh signaling and a mechanism acting in parallel with Shh signaling in the control of cell-cycle exit.

摘要

Rab11家族相互作用蛋白4(Rab11-FIP4)最初在人类中被鉴定为一种Rab11结合蛋白,但其生物学功能尚不清楚。我们克隆了斑马鱼Rab11-FIP4的直系同源物(zRab11-FIP4),并使用反义吗啉代寡核苷酸在体内分析其功能。zRab11-FIP4以两种可变转录本的形式表达,即主要在神经组织中表达的较长的A形式和普遍表达的较短的B形式;原位杂交显示A形式是主要形式。在发育中的视网膜中,zRab11-FIP4在早期整个视网膜的祖细胞中表达;然后,随着分化,表达逐渐局限于神经节细胞层和睫状边缘区。zRab11-FIP4A敲低的胚胎表现出与shh突变体相似的眼部表型,如小眼,细胞增殖受损,视网膜祖细胞的细胞周期退出和分化延迟。在吗啉代寡核苷酸处理的视网膜中观察到p57kip2诱导缺失和细胞周期蛋白D1表达增强。重要的是,通过异位表达p57Kip2或显性负性PKA可挽救细胞周期退出的延迟,这表明Rab11-FIP4A通过调节Shh信号通路以及在控制细胞周期退出中与Shh信号通路平行起作用的机制,在视网膜发育中起关键作用。

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