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表达 CLCN2 早期终止突变的小鼠中的光感受器变性、无精子症、脑白质病和异常 RPE 细胞功能。

Photoreceptor degeneration, azoospermia, leukoencephalopathy, and abnormal RPE cell function in mice expressing an early stop mutation in CLCN2.

机构信息

Jackson Laboratory, Bar Harbor, Maine, USA.

出版信息

Invest Ophthalmol Vis Sci. 2010 Jun;51(6):3264-72. doi: 10.1167/iovs.09-4887. Epub 2010 Jan 13.

Abstract

PURPOSE

To determine the molecular basis and the pathologic consequences of a chemically induced mutation in a mouse model of photoreceptor degeneration, nmf240.

METHODS

Mice from a G3 N-ethyl-N-nitrosourea mutagenesis program were screened by indirect ophthalmoscopy for abnormal fundi. A chromosomal position for the recessive nmf240 mutation was determined by a genome-wide linkage analysis by use of simple sequence length polymorphic markers in an F2 intercross. The critical region was refined, and candidate genes were screened by direct sequencing. The nmf240 phenotype was characterized by histologic analysis of the retina, brain, and male reproductive organs and by electroretinogram (ERG)-based studies of the retina and retinal pigment epithelium (RPE).

RESULTS

Clinically, homozygous nmf240 mutants exhibit a grainy retina that progresses to panretinal patches of depigmentation. The mutation was localized to a region on chromosome 16 containing Clcn2, a gene associated with retinal degeneration. Sequencing identified a missense C-T mutation at nucleotide 1063 in Clcn2 that converts a glutamine to a stop codon. Mice homozygous for the Clcn2(nmf240) mutation experience a severe loss of photoreceptor cells at 14 days of age that is preceded by an elongation of RPE apical microvilli. Homozygous mutants also experience leukoencephalopathy in multiple brain areas and male sterility. Despite a normal retinal histology in nmf240 heterozygotes, the ERG light peak, generated by the RPE, is reduced.

CONCLUSIONS

The nmf240 phenotype closely resembles that reported for Clcn2 knockout mice. The observation that heterozygous nmf240 mice present with a reduced ERG light peak component suggests that CLCN2 is necessary for the generation of this response component.

摘要

目的

确定 nmf240 光感受器退行性变小鼠模型中化学诱导突变的分子基础和病理后果。

方法

通过间接检眼镜对来自 G3 N-乙基-N-亚硝基脲诱变计划的小鼠进行筛选,以发现异常眼底。通过使用 F2 近交系中的简单序列长度多态性标记物进行全基因组连锁分析,确定隐性 nmf240 突变的染色体位置。对关键区域进行细化,并通过直接测序筛选候选基因。通过对视网膜、大脑和男性生殖器官的组织学分析以及视网膜和视网膜色素上皮(RPE)的视网膜电图(ERG)研究,对 nmf240 表型进行特征描述。

结果

临床上,纯合 nmf240 突变体表现出颗粒状视网膜,进展为全视网膜色素脱失斑。该突变定位于包含 Clcn2 的 16 号染色体区域,Clcn2 与视网膜变性有关。测序发现 Clcn2 中核苷酸 1063 处的 C-T 错义突变,将谷氨酰胺突变为终止密码子。14 天时,Clcn2(nmf240)突变的纯合子小鼠经历严重的光感受器细胞丧失,之前 RPE 顶微绒毛伸长。纯合突变体还在多个脑区经历脑白质病和雄性不育。尽管 nmf240 杂合子的视网膜组织学正常,但 ERG 光峰(由 RPE 产生)降低。

结论

nmf240 表型与 Clcn2 敲除小鼠报告的表型非常相似。观察到 nmf240 杂合子小鼠的 ERG 光峰组件降低,表明 CLCN2 是产生这种反应组件所必需的。

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