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在肌球蛋白 VIIa(Myo7a)发生突变的小鼠中出现视网膜电图异常,该基因与人类 1B 型尤塞氏综合征有关。

Electroretinographic anomalies in mice with mutations in Myo7a, the gene involved in human Usher syndrome type 1B.

作者信息

Libby R T, Steel K P

机构信息

Medical Research Council Institute of Hearing Research, University Park, Nottingham NG7 2RD, UK.

出版信息

Invest Ophthalmol Vis Sci. 2001 Mar;42(3):770-8.

Abstract

PURPOSE

In humans, mutations in the gene encoding myosin VIIa can cause Usher syndrome type 1b (USH1B), a disease characterized by deafness and retinitis pigmentosa. Myosin VIIa is also the gene responsible for the inner ear abnormalities at the shaker1 (sh1) locus in mice. To date, none of the sh1 alleles examined have shown any signs of retinal degeneration. In the present study, electroretinograms (ERGs) were recorded from sh1 mice to determine whether they have any physiological abnormalities.

METHODS

ERGs were recorded from mice homozygous for one of nine mutant alleles of Myo7a ranging in age from postnatal day (P)20 to approximately 1 year. All mice were dark adapted for 30 minutes, and all the mutant mice were paired with an appropriately age- and strain-matched control animal. A presumptive null allele of myosin VIIa, Myo7a(4626SB), was used to determine whether mice without myosin VIIa had an increased threshold, as assessed by the light level required to elicit a 15-microV b-wave.

RESULTS

At the maximum light intensity used, five of the nine alleles examined had significantly reduced a- and b-wave amplitudes. For example, Myo7a(4626SB) mutant mice had a 20% reduction in a-wave amplitude at the maximum light intensity, and this reduction was the same for mice ranging in age from P20 through 7 months. The b-wave thresholds of the Myo7a(4626SB) mutant mice were not significantly different from those of the control mice. Furthermore, whereas most of the alleles' a-wave implicit times were the same in mutant and control mice, mutant mice with two of the alleles had significantly faster a-wave implicit times.

CONCLUSIONS

Mutations in myosin VIIa in mice can lead to decreased ERG amplitudes while threshold remains normal. This is the first report of a physiological anomaly in a mouse model with a mutation in the same gene as involved in USH1B.

摘要

目的

在人类中,编码肌球蛋白VIIa的基因突变可导致1B型Usher综合征(USH1B),这是一种以耳聋和色素性视网膜炎为特征的疾病。肌球蛋白VIIa也是导致小鼠shaker1(sh1)位点内耳异常的基因。迄今为止,所检测的任何sh1等位基因均未显示出视网膜变性的迹象。在本研究中,记录了sh1小鼠的视网膜电图(ERG),以确定它们是否存在任何生理异常。

方法

从出生后第(P)20天至约1岁的Myo7a九个突变等位基因之一的纯合子小鼠记录ERG。所有小鼠均暗适应30分钟,所有突变小鼠均与年龄和品系匹配的对照动物配对。使用肌球蛋白VIIa的一个推定无效等位基因Myo7a(4626SB)来确定没有肌球蛋白VIIa的小鼠是否具有增加的阈值,这通过引发15微伏b波所需的光水平来评估。

结果

在所使用的最大光强度下,所检测的九个等位基因中的五个具有显著降低的a波和b波振幅。例如,Myo7a(4626SB)突变小鼠在最大光强度下a波振幅降低了20%,并且从P20到7个月龄的小鼠中这种降低是相同的。Myo7a(4626SB)突变小鼠的b波阈值与对照小鼠的b波阈值没有显著差异。此外,虽然大多数等位基因的a波潜伏时间在突变小鼠和对照小鼠中相同,但具有两个等位基因的突变小鼠的a波潜伏时间明显更快。

结论

小鼠中肌球蛋白VIIa的突变可导致ERG振幅降低而阈值保持正常。这是关于与USH1B相关的同一基因突变的小鼠模型中生理异常的首次报道。

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