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reelin(导致reeler突变的基因)在小鼠胚胎发育和成年期的表达。

Expression of reelin, the gene responsible for the reeler mutation, in embryonic development and adulthood in the mouse.

作者信息

Ikeda Y, Terashima T

机构信息

Department of Anatomy and Embryology, Tokyo Metropolitan Institute for Neuroscience, Fuchu, Japan.

出版信息

Dev Dyn. 1997 Oct;210(2):157-72. doi: 10.1002/(SICI)1097-0177(199710)210:2<157::AID-AJA8>3.0.CO;2-F.

Abstract

reelin has recently been isolated as a candidate gene, the mutation of which gives rise to the reeler phenotype in mice. In this study, we analyzed the expression of reelin during embryonic development in the mouse and in adult mouse tissues, by in situ hybridization. reelin transcripts were present on embryonic day (E) 8.5 in the somite, foregut, yolk sac, and unclosed neural plate. reelin was expressed in the brain, spinal cord, liver, and kidney throughout embryonic development, and transiently in many developing organs such as the optic cup, blood vessels, precartilage, stomach, pituitary, vibrissae, tooth germ, and in cells along growing nerve fibers. These observations indicate a role for reelin in development of organs in addition to that in neuronal migration. Furthermore, we demonstrated the existence of reelin mRNA and its cellular distribution in the adult brain, spinal cord, liver, kidney, testis, and ovary, suggesting additional roles for reelin in stabilizing the cyto-architecture and in remolding in adult organs. However, we detected no obvious phenotype of the reelin-expressing organs except for the brain in the reeler mouse, indicating the functional redundancy of this gene during the development of these organs.

摘要

最近,reelin被分离出来作为一个候选基因,其突变会导致小鼠出现reeler表型。在本研究中,我们通过原位杂交分析了reelin在小鼠胚胎发育过程以及成年小鼠组织中的表达情况。在胚胎第8.5天,reelin转录本出现在体节、前肠、卵黄囊和未闭合的神经板中。在整个胚胎发育过程中,reelin在脑、脊髓、肝脏和肾脏中表达,并在许多发育中的器官中短暂表达,如视杯、血管、软骨前体、胃、垂体、触须、牙胚,以及沿生长神经纤维的细胞中。这些观察结果表明,reelin除了在神经元迁移中发挥作用外,在器官发育中也发挥作用。此外,我们证明了reelin mRNA在成年脑、脊髓、肝脏、肾脏、睾丸和卵巢中的存在及其细胞分布,表明reelin在稳定成年器官的细胞结构和重塑方面还有其他作用。然而,除了reeler小鼠的脑之外,我们在表达reelin的器官中未检测到明显的表型,这表明该基因在这些器官发育过程中存在功能冗余。

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