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小鼠Pax2(1Neu)突变与肾-眼裂综合征家族中的一种人类PAX2突变相同,会导致脑、耳、眼和肾的发育缺陷。

The mouse Pax2(1Neu) mutation is identical to a human PAX2 mutation in a family with renal-coloboma syndrome and results in developmental defects of the brain, ear, eye, and kidney.

作者信息

Favor J, Sandulache R, Neuhäuser-Klaus A, Pretsch W, Chatterjee B, Senft E, Wurst W, Blanquet V, Grimes P, Spörle R, Schughart K

机构信息

GSF-National Research Center for Environment and Health, Institute of Mammalian Genetics, Oberschleissheim, Germany.

出版信息

Proc Natl Acad Sci U S A. 1996 Nov 26;93(24):13870-5. doi: 10.1073/pnas.93.24.13870.

Abstract

We describe a new mouse frameshift mutation (Pax2(1Neu)) with a 1-bp insertion in the Pax2 gene. This mutation is identical to a previously described mutation in a human family with renal-coloboma syndrome [Sanyanusin, P., McNoe, L. A., Sullivan, M. J., Weaver, R. G. & Eccles, M. R. (1995) Hum. Mol. Genet. 4, 2183-2184]. Heterozygous mutant mice exhibit defects in the kidney, the optic nerve, and retinal layer of the eye, and in homozygous mutant embryos, development of the optic nerve, metanephric kidney, and ventral regions of the inner ear is severely affected. In addition, we observe a deletion of the cerebellum and the posterior mesencephalon in homozygous mutant embryos demonstrating that, in contrast to mutations in Pax5, which is also expressed early in the mid-hindbrain region, loss of Pax2 gene function alone results in the early loss of the mid-hindbrain region. The mid-hindbrain phenotype is similar to Wnt1 and En1 mutant phenotypes, suggesting the conservation of gene regulatory networks between vertebrates and Drosophila.

摘要

我们描述了一种新的小鼠移码突变(Pax2(1Neu)),其在Pax2基因中有一个1个碱基对的插入。该突变与先前在一个患有肾-虹膜缺损综合征的人类家族中描述的突变相同[Sanyanusin, P., McNoe, L. A., Sullivan, M. J., Weaver, R. G. & Eccles, M. R. (1995) Hum. Mol. Genet. 4, 2183 - 2184]。杂合突变小鼠在肾脏、视神经和眼睛的视网膜层表现出缺陷,而在纯合突变胚胎中,视神经、后肾和内耳腹侧区域的发育受到严重影响。此外,我们在纯合突变胚胎中观察到小脑和中脑后部缺失,这表明与同样在中后脑区域早期表达的Pax5突变不同,单独缺失Pax2基因功能会导致中后脑区域早期缺失。中后脑表型与Wnt1和En1突变体表型相似,这表明脊椎动物和果蝇之间基因调控网络具有保守性。

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