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Fkh5基因缺陷型小鼠在中脑尾部和下丘脑乳头体出现发育异常。

Fkh5-deficient mice show dysgenesis in the caudal midbrain and hypothalamic mammillary body.

作者信息

Wehr R, Mansouri A, de Maeyer T, Gruss P

机构信息

Max Planck Institute for Biophysical Chemistry, Department of Molecular Cell Biology, Goettingen, Germany.

出版信息

Development. 1997 Nov;124(22):4447-56. doi: 10.1242/dev.124.22.4447.

Abstract

The murine winged helix gene Fkh5 is specifically expressed in the developing central nervous system (CNS). Early embryonic Fkh5 expression is restricted to the mammiliary body region of the caudal hypothalamus, midbrain, hindbrain and spinal cord. Postnatally, signals persist in specific nuclei of the mammillary body and in the midbrain. We generated Fkh5 deficient mice by homologous recombination to assess its in vivo function. At birth, Fkh5-deficient mice are viable and indistinguishable from wild-type and Fkh5 heterozygous littermates. However, about one third die within the first two days and another fifth before weaning. Surviving Fkh5-deficient mice become growth retarded within the first week and remain smaller throughout their whole life span. Fkh5-deficient females on 129Sv x C57BL/6 genetic background are fertile, but do not nurture their pups. More detailed analysis of Fkh5-deficient brains reveals distinct alterations in the CNS. In the midbrain, mutant mice exhibit reduced inferior colliculi and an overgrown anterior cerebellum. Furthermore, the hypothalamic mammillary body of Fkh5-deficient brains lacks the medial mammillary nucleus. These results suggest that Fkh5 plays a major role during CNS development.

摘要

小鼠翼状螺旋基因Fkh5在发育中的中枢神经系统(CNS)中特异性表达。胚胎早期Fkh5的表达局限于下丘脑尾部的乳头体区域、中脑、后脑和脊髓。出生后,信号持续存在于乳头体的特定核团和中脑中。我们通过同源重组产生了Fkh5缺陷小鼠,以评估其体内功能。出生时,Fkh5缺陷小鼠存活,与野生型和Fkh5杂合子同窝小鼠无差异。然而,约三分之一在出生后的前两天内死亡,另有五分之一在断奶前死亡。存活的Fkh5缺陷小鼠在第一周内生长迟缓,并且在其整个生命周期中都保持较小的体型。在129Sv×C57BL/6遗传背景下的Fkh5缺陷雌性小鼠具有生育能力,但不哺育幼崽。对Fkh5缺陷大脑进行更详细的分析发现中枢神经系统存在明显改变。在中脑中,突变小鼠的下丘体积减小,前小脑过度生长。此外,Fkh5缺陷大脑的下丘脑乳头体缺乏内侧乳头核。这些结果表明Fkh5在中枢神经系统发育过程中起主要作用。

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