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艾姆斯·瓦尔策耳聋小鼠的视网膜电图振幅降低,且Pcdh15转录本存在复杂的可变剪接。

Ames Waltzer deaf mice have reduced electroretinogram amplitudes and complex alternative splicing of Pcdh15 transcripts.

作者信息

Haywood-Watson Ricky J L, Ahmed Zubair M, Kjellstrom Sten, Bush Ronald A, Takada Yuichiro, Hampton Lori L, Battey James F, Sieving Paul A, Friedman Thomas B

机构信息

National Institute on Deafness and Other Communication Disorders, National Institutes of Health, Bethesda, MD 20850, and the Molecular and Cellular Biology Program, Tulane University, New Orleans, LA, USA.

出版信息

Invest Ophthalmol Vis Sci. 2006 Jul;47(7):3074-84. doi: 10.1167/iovs.06-0108.

Abstract

PURPOSE

Mutations of PCDH15, the gene encoding protocadherin 15, cause either nonsyndromic deafness DFNB23 or Usher syndrome type 1F (USH1F) in humans and deafness with balance problems in Ames waltzer (av) mice. Persons with USH1 usually begin to exhibit signs of retinitis pigmentosa (RP) in early adolescence, but av mice are reported to have functional retinas. In this study, the auditory, visual and molecular biological phenotype of Pcdh15av-5J and Pcdh15av-Jfb mice is characterized, and their usefulness as animal models of USH1 is evaluated.

METHODS

Hearing thresholds of mice between 6 and 10 weeks of age were measured by auditory brain stem response (ABR). Immunohistochemistry and histology were used to examine the effect of homozygosity of Pcdh15av-5J on stereocilia bundles of inner ear hair cells and on the photoreceptor cells of the retina. Scotopic and photopic Ganzfeld ERGs were recorded from homozygous Pcdh15av-5J and Pcdh15av-Jfb mice at different ages. Heterozygous littermates served as control subjects. Measurements of the width of the outer nuclear layer (ONL) and the length of rod photoreceptor outer segment (ROS) were made.

RESULTS

Homozygous Pcdh15av-5J mice have profound hearing loss and disorganized stereocilia bundles of inner ear hair cells. Compared with heterozygous littermates, homozygous Pcdh15av-5J and Pcdh15av-Jfb mutant mice had scotopic ERG amplitudes consistently reduced by approximately 40% at all light intensities. The b-to-a-wave ratio confirmed that the a- and b-waves were reduced proportionally in homozygous mutant mice. Histologic measurements of retinal sections revealed no significant differences in either the ONL width or the ROS length as a function of genotype. The protocadherin 15 labeling pattern with antisera PB303 in the retina of both heterozygous and homozygous Pcdh15av-5J mice was indistinguishable from the wild type. Wild-type Pcdh15 have many alternatively spliced isoforms. A novel isoform was found in the retina of homozygous Pcdh15av-5J mice, which appears to circumvent the effect of the mutant allele (IVS14-2A-->G), which causes skipping of exon 14, a shift in the translation reading frame and a premature stop codon in exon 15.

CONCLUSIONS

Pcdh15(av-5J) and Pcdh15(av-Jfb) mice do not faithfully mimic the RP found in USH1 due to mutations of PCDH15, but have significantly attenuated ERG function in the absence of histologic change. The decline in ERG amplitude with a preserved b-to-a-wave ratio suggests a role for Pcdh15 in retinal function and/or generation of the ERG potentials. Understanding the molecular mechanism by which av mice circumvent degeneration of the retina might offer insights into potential therapies for USH1.

摘要

目的

原钙黏蛋白15(protocadherin 15)编码基因PCDH15的突变在人类中会导致非综合征性耳聋DFNB23或1F型Usher综合征(USH1F),在艾姆斯华尔兹(av)小鼠中会导致伴有平衡问题的耳聋。USH1患者通常在青春期早期开始出现视网膜色素变性(RP)的症状,但据报道av小鼠具有功能性视网膜。在本研究中,对Pcdh15av - 5J和Pcdh15av - Jfb小鼠的听觉、视觉和分子生物学表型进行了表征,并评估了它们作为USH1动物模型的实用性。

方法

通过听性脑干反应(ABR)测量6至10周龄小鼠的听力阈值。采用免疫组织化学和组织学方法,研究Pcdh15av - 5J纯合性对内耳毛细胞静纤毛束和视网膜光感受器细胞的影响。在不同年龄对纯合Pcdh15av - 5J和Pcdh15av - Jfb小鼠进行暗视和明视全视野视网膜电图(ERG)记录。杂合子同窝小鼠作为对照。测量外核层(ONL)宽度和视杆光感受器外段(ROS)长度。

结果

纯合Pcdh15av - 5J小鼠有严重听力损失,内耳毛细胞静纤毛束紊乱。与杂合子同窝小鼠相比,纯合Pcdh15av - 5J和Pcdh15av - Jfb突变小鼠在所有光强度下暗视ERG振幅均持续降低约40%。b波与a波比值证实,纯合突变小鼠中a波和b波成比例降低。视网膜切片的组织学测量显示,ONL宽度或ROS长度在基因型方面无显著差异。杂合和纯合Pcdh15av - 5J小鼠视网膜中抗血清PB303标记的原钙黏蛋白15模式与野生型无明显差异。野生型Pcdh15有许多可变剪接异构体。在纯合Pcdh15av - 5J小鼠视网膜中发现了一种新的异构体,它似乎规避了突变等位基因(IVS14 - 2A→G)的影响,该突变等位基因导致外显子14跳跃、翻译阅读框移位以及外显子15中出现提前终止密码子。

结论

由于PCDH15突变,Pcdh15(av - 5J)和Pcdh15(av - Jfb)小鼠不能如实地模拟USH1中发现的RP,但在无组织学改变的情况下ERG功能显著减弱。ERG振幅下降而b波与a波比值保持不变,提示Pcdh15在视网膜功能和/或ERG电位产生中起作用。了解av小鼠规避视网膜变性的分子机制可能为USH1的潜在治疗提供思路。

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