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两种RORα基因敲除小鼠(蹒跚鼠和RORα基因完全敲除小鼠)浦肯野细胞的比较研究

A comparative study of Purkinje cells in two RORalpha gene mutant mice: staggerer and RORalpha(-/-).

作者信息

Doulazmi M, Frédéric F, Capone F, Becker-André M, Delhaye-Bouchaud N, Mariani J

机构信息

Laboratoire Développement et Vieillissement du Système Nerveux, Institut des Neurosciences UMR 7624 CNRS, Université P. and M. Curie, 75005, Paris, France.

出版信息

Brain Res Dev Brain Res. 2001 Apr 30;127(2):165-74. doi: 10.1016/s0165-3806(01)00131-6.

Abstract

The staggerer (Rora(sg/sg)) mutation is a deletion in the RORalpha gene, one member of a family of nuclear receptor genes related to the retinoic acid receptor. Recently Steinmayr et al. (Proc. Natl. Acad. Sci. USA 95 (1998) 3960) generated a RORalpha null-mutant mouse (Rora(-/-)) by using a targeting vector in which a beta-Gal gene replaces the second finger of the DNA-binding domain of RORalpha. The Rora(-/-) cerebellum is qualitatively a phenocopy of the Rora(sg/sg) one, but the two strains differ slightly in their motor skills. To address the question whether the morphological defects in the Rora(-/-) cerebellum are identical to the Rora(sg/sg) one, we compared number and size of Purkinje cells in both staggerer and RORalpha null-mutant mice, using calbindin (CaBP) immunohistochemistry and revelation of beta-Gal activity. Compared to control cerebella the Rora(sg/sg) cerebellum has 82% fewer CaBP-positive cells. In Rora(-/-) mouse, all the the beta-Gal-positive Purkinje cells also expressed CaBP, but the cerebellum contained 78% less CaBP-positive cells than control, a deficit not different from the one observed in Rora(sg/sg). We show similar mediolateral compartments in Purkinje cell number and cytological abnormality in Rora(sg/sg) and Rora(-/-) mice. These results provide quantitative support for the hypothesis that the cerebellar phenotype in the homozygous Rora(sg/sg) is due to the lack of function of the RORalpha gene.

摘要

蹒跚突变体(Rora(sg/sg))是维甲酸受体相关核受体基因家族成员之一的RORα基因发生的一种缺失。最近,施泰迈尔等人(《美国国家科学院院刊》95 (1998) 3960)通过使用一种靶向载体构建了RORα基因敲除小鼠(Rora(-/-)),在该载体中β-半乳糖苷酶基因取代了RORα的DNA结合结构域的第二个指状结构域。Rora(-/-)小鼠的小脑在性质上是Rora(sg/sg)小鼠小脑的拟表型,但这两个品系在运动技能上略有不同。为了探讨Rora(-/-)小鼠小脑的形态学缺陷是否与Rora(sg/sg)小鼠的相同,我们使用钙结合蛋白(CaBP)免疫组织化学和β-半乳糖苷酶活性显色法,比较了蹒跚突变体和RORα基因敲除小鼠中浦肯野细胞的数量和大小。与对照小脑相比,Rora(sg/sg)小鼠小脑的CaBP阳性细胞减少了82%。在Rora(-/-)小鼠中,所有β-半乳糖苷酶阳性的浦肯野细胞也表达CaBP,但该小鼠小脑的CaBP阳性细胞比对照少78%,这一缺陷与在Rora(sg/sg)小鼠中观察到的无差异。我们在Rora(sg/sg)和Rora(-/-)小鼠的浦肯野细胞数量和细胞学异常方面显示出相似的中外侧区室。这些结果为纯合Rora(sg/sg)小鼠小脑表型是由于RORα基因功能缺失这一假说提供了定量支持。

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