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KCNV2 基因大片段缺失在伴有超正常杆反应的 Cone 型营养不良患者中很常见。

Large deletions of the KCNV2 gene are common in patients with cone dystrophy with supernormal rod response.

机构信息

Molecular Genetics Laboratory, Institute for Ophthalmic Research, Centre for Ophthalmology, University Clinics Tübingen, Germany.

出版信息

Hum Mutat. 2011 Dec;32(12):1398-406. doi: 10.1002/humu.21580. Epub 2011 Sep 12.

Abstract

Cone dystrophy with supernormal rod response (CDSRR) is considered to be a very rare autosomal recessive retinal disorder. CDSRR is associated with mutations in KCNV2, a gene that encodes a modulatory subunit (Kv8.2) of a voltage-gated potassium channel. In this study, we found that KCNV2 mutations are present in a substantial fraction (2.2-4.3%) of a sample of 367 independent patients with a variety of initial clinical diagnoses of cone malfunction, indicating that CDSRR is underdiagnosed and more common than previously thought. In total, we identified 20 different KCNV2 mutations; 15 of them are novel. A new finding of this study is the substantial proportion of large deletions at the KCNV2 locus that accounts for 15.5% of the mutant alleles in our sample. We determined the breakpoints and size of all five different deletions, which ranged between 10.9 and 236.8 kb. Two deletions encompass the entire KCNV2 gene and one also includes the adjacent VLDLR gene. Furthermore, we investigated N-terminal amino acid substitution mutations for its effect on interaction with Kv2.1 using yeast two-hybrid technology. We found that these mutations dramatically reduce or abolish this interaction suggesting a lack of assembly of heteromeric Kv channels as one underlying pathomechanism of CDSRR.

摘要

cone 伴超敏 rod 反应(CDSRR)被认为是一种非常罕见的常染色体隐性视网膜疾病。CDSRR 与 KCNV2 基因突变有关,该基因编码电压门控钾通道的调节亚基(Kv8.2)。在这项研究中,我们发现 KCNV2 突变存在于 367 名具有各种初始 cone 功能障碍临床诊断的独立患者样本中的很大一部分(2.2-4.3%),这表明 CDSRR 被低估了,比以前认为的更常见。总共发现了 20 种不同的 KCNV2 突变,其中 15 种是新的。本研究的一个新发现是 KCNV2 基因座的大片段缺失比例很大,占我们样本中突变等位基因的 15.5%。我们确定了所有 5 种不同缺失的断点和大小,范围在 10.9 和 236.8 kb 之间。两个缺失包含整个 KCNV2 基因,一个缺失还包含相邻的 VLDLR 基因。此外,我们使用酵母双杂交技术研究了 N 端氨基酸替换突变对与 Kv2.1 相互作用的影响。我们发现这些突变显著降低或消除了这种相互作用,这表明异源 Kv 通道的组装缺失是 CDSRR 的一种潜在发病机制。

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