首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Phenotypic consequences of deletion of the gamma 3 alpha 5 or beta 3 subunit of the type A gamma-aminobutyric acid receptor in mice.
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Phenotypic consequences of deletion of the gamma 3 alpha 5 or beta 3 subunit of the type A gamma-aminobutyric acid receptor in mice.

机译:小鼠中A型γ-氨基丁酸受体的γ3α5或β3亚基缺失的表型后果。

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摘要

Three genes (Gabrg3, Gabra5, and Gabrb3) encoding the gamma 3, alpha 5, and beta 3 subunits of the type A gamma-aminobutyric acid receptor, respectively, are known to map near the pink-eyed dilution (p) locus in mouse chromosome 7. This region shares homology with a segment of human chromosome 15 that is implicated in Angelman syndrome, an inherited neurobehavioral disorder. By mapping Gabrg3 on a panel of p-locus deletions, we have determined that the order of genes within this cluster is centromere-p(D15S12h)-Gabrg3-Gabra5-Gabrb3-telom ere. Like Gabrb3, neither the Gabra5 nor Gabrg3 gene is functionally imprinted in adult mouse brain. Mice deleted for all three subunits die at birth with a cleft palate, although there are rare survivors (approximately 5%) that do not have a cleft palate but do exhibit a neurological abnormality characterized by tremor, jerky gait, and runtiness. We have previously suggested that deficiency of the beta 3 subunit may be responsible for the clefting defect. Most notably, however, in this report we describe mice carrying two overlapping, complementing p deletions that fail to express the gamma 3 transcript, as well as mice from another line that express neither the gamma 3 nor alpha 5 transcripts. Surprisingly, mice from both of these lines are phenotypically normal and do not exhibit any of the neurological symptoms characteristic of the rare survivors that are deleted for all three (gamma 3, alpha 5, and beta 3) subunits. These mice therefore provide a whole-organism type A gamma-aminobutyric-acid receptor background that is devoid of any receptor subtypes that normally contain the gamma 3 and/or alpha 5 subunits. The absence of an overt neurological phenotype in mice lacking the gamma 3 and/or alpha 5 subunits also suggests that mutations in these genes are unlikely to provide useful animal models for Angelman syndrome in humans.
机译:已知分别编码A型γ-氨基丁酸受体的gamma 3,alpha 5和beta 3亚基的三个基因(Gabrg3,Gabra5和Gabrb3)定位在小鼠的粉红色眼睛稀释(p)位点附近7号染色体。该区域与人类15号染色体的片段具有同源性,该片段与Angelman综合征(一种遗传的神经行为障碍)有关。通过将Gabrg3定位在一组p位点缺失上,我们确定该簇内的基因顺序是着丝粒-p(D15S12h)-Gabrg3-Gabra5-Gabrb3-telom ere。像Gabrb3一样,Gabra5和Gabrg3基因均未在成年小鼠大脑中功能性地印迹。这三个亚基缺失的小鼠在出生时死于but裂,尽管有罕见的幸存者(约5%)没有that裂,但确实表现出以震颤,步态不稳和矮小为特征的神经系统异常。我们以前曾提出,β3亚基的缺乏可能是造成裂口的原因。但是,最值得注意的是,在本报告中,我们描述了携带两个重叠的互补p缺失而无法表达gamma 3转录本的小鼠,以及来自另一种既不表达gamma 3也不表达alpha 5转录本的小鼠。出乎意料的是,来自这两个系的小鼠在表型上都是正常的,并且没有表现出针对所有三个亚基(γ3,α5和β3)缺失的罕见存活者的任何神经系统症状。因此,这些小鼠提供了一个完整的A型有机体γ-氨基丁酸受体背景,该背景不含通常含有γ3和/或α5亚基的任何受体亚型。缺乏γ3和/或α5亚基的小鼠缺乏明显的神经表型,这也表明这些基因中的突变不太可能为人类的安格曼综合症提供有用的动物模型。

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