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日本视网膜色素变性和视锥视杆营养不良患者中C21orf2基因LRR帽结构域新突变的鉴定

Identification of Novel Mutations in the LRR-Cap Domain of C21orf2 in Japanese Patients With Retinitis Pigmentosa and Cone-Rod Dystrophy.

作者信息

Suga Akiko, Mizota Atsushi, Kato Mitsuhiro, Kuniyoshi Kazuki, Yoshitake Kazutoshi, Sultan William, Yamazaki Masashi, Shimomura Yoshikazu, Ikeo Kazuho, Tsunoda Kazushige, Iwata Takeshi

机构信息

National Institute of Sensory Organs Tokyo Medical Center, National Hospital Organization, Tokyo, Japan.

Department of Ophthalmology, Teikyo University School of Medicine, Tokyo, Japan.

出版信息

Invest Ophthalmol Vis Sci. 2016 Aug 1;57(10):4255-63. doi: 10.1167/iovs.16-19450.

Abstract

PURPOSE

C21orf2 encodes a ciliary protein related to syndromic and nonsyndromic retinal degeneration. The purpose of this study was to identify novel mutations of C21orf2 associated with syndromic autosomal recessive retinitis pigmentosa (arRP) and autosomal recessive cone-rod dystrophy (arCRD) by using whole exome sequencing of a Japanese cohort.

METHODS

Whole exome sequencing was performed on DNA from affected and healthy members from 147 families with retinal degenerations. Identified nonsense and missense mutations were further restricted by using the reported single nucleotide variation frequencies and inherited patterns. The effect of the mutations was examined by in vitro assays.

RESULTS

Novel mutations in C21orf2 were found in Japanese patients with arRP with skeletal defects or arCRD. Compound heterozygous mutations, from one family (p.V111M and p.Y107H), and a homozygous mutation, from another family (p.Y107C), were all located in the leucine-rich repeat C-terminal domain required for protein stabilization. C21orf2 was expressed in the retina through the developing to the mature stage, and the protein localized to the photoreceptor cilia in the adult retina. In vitro expression showed reduced levels and affected localizations of mutated protein products compared to the wild type.

CONCLUSIONS

The identified C21orf2 mutations decreased protein stability and affected cytoplasmic localization of C21orf2. Since C21orf2 was required for ciliogenesis, our data suggested that reduced levels of functional C21orf2 induced photoreceptor degradation through abnormal cilia formation, leading to arRP or arCRD in the retina.

摘要

目的

C21orf2编码一种与综合征性和非综合征性视网膜变性相关的纤毛蛋白。本研究的目的是通过对一组日本人群进行全外显子组测序,鉴定与综合征性常染色体隐性视网膜色素变性(arRP)和常染色体隐性锥杆营养不良(arCRD)相关的C21orf2新突变。

方法

对147个患有视网膜变性的家庭中患病和健康成员的DNA进行全外显子组测序。利用已报道的单核苷酸变异频率和遗传模式进一步筛选已鉴定出的无义突变和错义突变。通过体外实验检测这些突变的影响。

结果

在患有骨骼缺陷的arRP或arCRD的日本患者中发现了C21orf2的新突变。来自一个家庭的复合杂合突变(p.V111M和p.Y107H)以及来自另一个家庭的纯合突变(p.Y107C)均位于蛋白质稳定所需的富含亮氨酸重复序列的C末端结构域。C21orf2在视网膜从发育到成熟阶段均有表达,且该蛋白在成年视网膜中定位于光感受器纤毛。体外表达显示,与野生型相比,突变蛋白产物的水平降低且定位受到影响。

结论

所鉴定的C21orf2突变降低了蛋白质稳定性,并影响了C21orf2的细胞质定位。由于C21orf2是纤毛发生所必需的,我们的数据表明,功能性C21orf2水平降低通过异常纤毛形成诱导光感受器退化,导致视网膜发生arRP或arCRD。

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