Kaneko Jun, Chiba Chikafumi
Graduate School of Life and Environmental Sciences, University of Tsukuba, Tennoudai 1-1-1, Tsukuba, Ibaraki 305-8572, Japan.
Neurosci Lett. 2009 Feb 6;450(3):252-7. doi: 10.1016/j.neulet.2008.11.031. Epub 2008 Nov 18.
The adult newt retinal regeneration is an ideal model for studying retinal regeneration by transdifferentiation of the retinal pigment epithelium (RPE) cells. Accumulated evidence suggests that the RNA-binding protein Musashi-1 (Msi1) is expressed in mature photoreceptors and RPE cells as well as in retinal stem/progenitor cells, being essential for vision. We have been investigating whether Msi1 is also essential for retinal regeneration. In the last paper [K. Susaki, J. Kaneko, Y. Yamano, K. Nakamura, W. Inami, T. Yoshikawa, Y. Ozawa, S. Shibata, O. Matsuzaki, H. Okano, C. Chiba, Musashi-1, an RNA-binding protein, is indispensable for survival of photoreceptors. Exp. Eye Res. (in press)], we showed that the expression profiles of Msi1 transcripts and protein isoforms change during retinal regeneration. In the current report, we show by immunohistochemistry that Msi1 is expressed in transdifferentiating cells or cells of regenerating retinal tissues. Upon retinectomy, Msi1 protein, which is expressed in the nuclei of intact (stage E-0) RPE cells, changed its subcellular localization, being expressed in both the nucleus and cytoplasm of the RPE-derived stem-like cells at stage E-1. As the retinal rudiment/regenerating retina (rR) and renewing RPE (rRPE) are specified from the stem-like cell population (stage E-2), Msi1 expression was maintained or up-regulated in the rR, while down-regulated in the rRPE. During further retinal regeneration, Msi1 expression was decreased in association with cell differentiation, except for photoreceptors and RPE cells whose Msi1 expression increased as they differentiate. Thus, Msi1 is likely to be regulated at various cellular events during retinal regeneration, implying that Msi1 may have multi-functions in retinal regeneration. All together, it is probable that Msi1 is one of the essential factors that need to be regulated in retinal regeneration.
成年蝾螈视网膜再生是通过视网膜色素上皮(RPE)细胞转分化来研究视网膜再生的理想模型。越来越多的证据表明,RNA结合蛋白Musashi-1(Msi1)在成熟光感受器、RPE细胞以及视网膜干细胞/祖细胞中表达,对视觉至关重要。我们一直在研究Msi1对视网膜再生是否也必不可少。在上一篇论文[K. Susaki, J. Kaneko, Y. Yamano, K. Nakamura, W. Inami, T. Yoshikawa, Y. Ozawa, S. Shibata, O. Matsuzaki, H. Okano, C. Chiba, Musashi-1,一种RNA结合蛋白,对光感受器的存活不可或缺。《实验眼研究》(即将发表)]中,我们表明Msi1转录本和蛋白质异构体的表达谱在视网膜再生过程中发生变化。在本报告中,我们通过免疫组织化学显示,Msi1在转分化细胞或再生视网膜组织的细胞中表达。视网膜切除后,在完整(E-0期)RPE细胞核中表达的Msi1蛋白改变了其亚细胞定位,并在E-1期RPE来源的干细胞样细胞的细胞核和细胞质中均有表达。随着视网膜原基/再生视网膜(rR)和更新的RPE(rRPE)从干细胞样细胞群体中分化出来(E-2期),Msi1在rR中表达维持或上调,而在rRPE中下调。在进一步的视网膜再生过程中,除了光感受器和RPE细胞随着分化而Msi-1表达增加外,Msi1表达随着细胞分化而降低。因此,Msi1可能在视网膜再生过程中的各种细胞事件中受到调控,这意味着Msi1在视网膜再生中可能具有多种功能。总之,Msi1很可能是视网膜再生中需要调控的关键因子之一。