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III型Usher综合征小鼠模型中的视力损害

Impairment of Vision in a Mouse Model of Usher Syndrome Type III.

作者信息

Tian Guilian, Lee Richard, Ropelewski Philip, Imanishi Yoshikazu

出版信息

Invest Ophthalmol Vis Sci. 2016 Mar;57(3):866-75. doi: 10.1167/iovs.15-16946.

Abstract

PURPOSE

The purpose of this study was to obtain an Usher syndrome type III mouse model with retinal phenotype.

METHODS

Speed congenic method was used to obtain Clrn1 exon 1 knockout (Clrn1-/-) and Clrn1N48K knockin (Clrn1N48K/N48K) mice under A/J background. To study the retinal functions of these mice, we measured scotopic and photopic ERG responses. To observe if there are any structural abnormalities, we conducted light and transmission electron microscopy of fixed retinal specimens.

RESULTS

In 3-month-old Clrn1-/- mice, scotopic b-wave amplitude was reduced by more than 25% at the light intensities from -2.2 to 0.38 log cd·s/m2, but scotopic a-wave amplitudes were comparable to those of age-matched wild type mice at all the light intensities tested. In 9-month-old Clrn1-/- mice, scotopic b-wave amplitudes were further reduced by more than 35%, and scotopic a-wave amplitude also showed a small decline as compared with wild type mice. Photopic ERG responses were comparable between Clrn1-/- and wild type mice. Those electrophysiological defects were not associated with a loss of rods. In Clrn1N48K/N48K mice, both a- and b-wave amplitudes were not discernable from those of wild type mice aged up to 10 months.

CONCLUSIONS

Mutations that are Clrn1-/- biallelic cause visual defects when placed under A/J background. The absence of apparent rod degeneration suggests that the observed phenotype is due to functional defects, and not due to loss of rods. Biallelic Clrn1N48K/N48K mutations did not cause discernible visual defects, suggesting that Clrn1- allele is more severely dysfunctional than ClrnN48K allele.

摘要

目的

本研究旨在获得具有视网膜表型的Ⅲ型Usher综合征小鼠模型。

方法

采用快速同源近交法在A/J背景下获得Clrn1外显子1敲除(Clrn1-/-)和Clrn1N48K敲入(Clrn1N48K/N48K)小鼠。为研究这些小鼠的视网膜功能,我们测量了暗适应和明适应视网膜电图(ERG)反应。为观察是否存在任何结构异常,我们对固定的视网膜标本进行了光学显微镜和透射电子显微镜检查。

结果

在3月龄的Clrn1-/-小鼠中,在-2.2至0.38 log cd·s/m2的光强度下,暗适应b波振幅降低超过25%,但在所有测试光强度下,暗适应a波振幅与年龄匹配的野生型小鼠相当。在9月龄的Clrn1-/-小鼠中,暗适应b波振幅进一步降低超过35%,与野生型小鼠相比,暗适应a波振幅也略有下降。Clrn1-/-和野生型小鼠之间的明适应ERG反应相当。这些电生理缺陷与视杆细胞的丧失无关。在Clrn1N48K/N48K小鼠中,直至10月龄,a波和b波振幅与野生型小鼠均无明显差异。

结论

在A/J背景下,Clrn1双等位基因敲除突变会导致视觉缺陷。视杆细胞无明显退化表明观察到的表型是由于功能缺陷,而非视杆细胞的丧失。双等位基因Clrn1N48K/N48K突变未导致明显的视觉缺陷,表明Clrn1等位基因的功能障碍比ClrnN48K等位基因更严重。

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