Mutations of CYP1B1 and FOXC1 genes for childhood glaucoma in Japanese individuals.

IF 2.1 3区 医学 Q2 OPHTHALMOLOGY
Nobuo Fuse, Masae Kimura, Ai Shimizu, Seizo Koshiba, Teruhiko Hamanaka, Makoto Nakamura, Nobuo Ishida, Hiroshi Sakai, Yoko Ikeda, Kazuhiko Mori, Atsushi Endo, Masao Nagasaki, Fumiki Katsuoka, Jun Yasuda, Yoichi Matsubara, Toru Nakazawa, Masayuki Yamamoto
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Abstract

Purpose: To explore the frequency and positions of genetic mutations in CYP1B1 and FOXC1 in a Japanese population.

Study design: Molecular genetic analysis.

Methods: Genomic DNA was extracted from 31 Japanese patients with childhood glaucoma (CG) from 29 families. We examined the CYP1B, FOXC1, and MYOC genes using Sanger sequencing and whole-exome sequencing (WES).

Results: For CYP1B1, we identified 9 families that harbored novel mutations, p.A202T, p.D274E, p.Q340*, and p.V420G; the remaining mutations had been previously reported. When mapped to the CYP1B1 protein structure, all mutations appeared to influence the enzymatic activity of CYP1B1 by provoking structural deformity. Five patients were homozygotes or compound heterozygotes, supporting the recessive inheritance of the CYP1B1 mutations in CG. In contrast, four patients were heterozygous for the CYP1B1 mutation, suggesting the presence of regulatory region mutations or strong modifiers. For the FOXC1 gene, we identified 3 novel mutations, p.Q23fs, p.Q70R, and p.E163*, all of which were identified in a heterozygous state. No mutation was found in the MYOC gene in these CG patients. All individuals with CYP1B1 and FOXC1 mutations were severely affected by early-onset CG. In the CYP1B1-, FOXC1-, and MYOC-negative families, we also searched for variants in the other candidate genes reported for CG through WES, but could not find any mutations in these genes.

Conclusions: Our analyses of 29 CG families revealed 9 families with point mutations in the CYP1B1 gene, and four of those patients appeared to be heterozygotes, suggesting the presence of complex pathogenic mechanisms. FOXC1 appears to be another major causal gene of CG, indicating that panel sequencing of CYP1B1 and FOXC1 will be useful for diagnosis of CG in Japanese individuals.

Abstract Image

日本儿童青光眼的 CYP1B1 和 FOXC1 基因突变。
目的:探讨日本人群中 CYP1B1 和 FOXC1 基因突变的频率和位置:分子遗传分析:从 29 个家庭的 31 名日本儿童青光眼 (CG) 患者中提取基因组 DNA。我们使用桑格测序法和全外显子组测序法(WES)检测了 CYP1B、FOXC1 和 MYOC 基因:结果:在 CYP1B1 基因中,我们发现了 9 个携带 p.A202T、p.D274E、p.Q340* 和 p.V420G 基因突变的家族;其余的基因突变先前已有报道。当映射到 CYP1B1 蛋白结构时,所有突变似乎都通过引起结构变形来影响 CYP1B1 的酶活性。五名患者为同型杂合子或复合杂合子,支持CG中CYP1B1突变的隐性遗传。相反,有四名患者是 CYP1B1 基因突变的杂合子,这表明存在调控区突变或强调控因子。在 FOXC1 基因中,我们发现了 3 个新的突变,即 p.Q23fs、p.Q70R 和 p.E163*,所有这些突变都是在杂合状态下发现的。这些 CG 患者的 MYOC 基因没有发现突变。所有 CYP1B1 和 FOXC1 基因突变的个体都受到早发型 CG 的严重影响。在CYP1B1、FOXC1和MYOC基因阴性的家族中,我们还通过WES搜索了其他已报道的CG候选基因的变异,但未发现这些基因有任何突变:结论:我们对 29 个 CG 家系进行了分析,发现 9 个家系的 CYP1B1 基因存在点突变,其中 4 名患者似乎是杂合子,这表明存在复杂的致病机制。FOXC1似乎是CG的另一个主要致病基因,这表明对CYP1B1和FOXC1进行全基因组测序将有助于诊断日本人的CG。
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来源期刊
CiteScore
4.80
自引率
8.30%
发文量
65
审稿时长
6-12 weeks
期刊介绍: The Japanese Journal of Ophthalmology (JJO) was inaugurated in 1957 as a quarterly journal published in English by the Ophthalmology Department of the University of Tokyo, with the aim of disseminating the achievements of Japanese ophthalmologists worldwide. JJO remains the only Japanese ophthalmology journal published in English. In 1997, the Japanese Ophthalmological Society assumed the responsibility for publishing the Japanese Journal of Ophthalmology as its official English-language publication. Currently the journal is published bimonthly and accepts papers from authors worldwide. JJO has become an international interdisciplinary forum for the publication of basic science and clinical research papers.
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