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一个家族中 COL2A1 基因新型深内含子突变导致早发性高度近视/眼型 Stickler 综合征。

A novel deep intronic COL2A1 mutation in a family with early-onset high myopia/ocular-only Stickler syndrome.

机构信息

State Key Laboratory of Ophthalmology, Zhongshan Ophthalmic Center, Sun Yat-sen University, Guangzhou, China.

出版信息

Ophthalmic Physiol Opt. 2020 May;40(3):281-288. doi: 10.1111/opo.12682. Epub 2020 Mar 20.

Abstract

PURPOSE

To identify the genetic defect causing early-onset high myopia (eoHM)/ocular-only Stickler syndrome (ocular-STL) in a large Chinese family.

METHODS

Genomic DNA and clinical data from a four-generation family with eoHM/ocular-STL were collected. Whole-exome sequencing was performed on one affected member in initial screening. Linkage scan based on microsatellite markers was carried out initially from candidate loci associated with autosomal dominant eoHM and Stickler syndrome. Sanger sequencing was used to detect potential variants. The pathogenicity of candidate variants was evaluated using mini genes ex vivo.

RESULTS

Eight patients and five unaffected members in the family participated in the study, in which the patients had high myopia with other variable ocular phenotypes but without extraocular abnormalities. Whole exome sequencing did not detect any potential pathogenic variant in all genes known to associate with the disease. The eoHM/ocular-STL in the family was mapped to markers around COL2A1 by candidate loci linkage scan, with a maximum lod score of 3.31 for D12S1590 at θ = 0. A novel deep intronic variant, c.86-50C > G in intron 1 of COL2A1, was detected by Sanger sequencing and co-segregated with eoHM/ocular-STL in the family. Ex vivo splicing test using mini genes confirmed that the variant created a new splicing acceptor 49 bp before the canonical splicing site of exon 2, resulted in addition of 49 bp fragment in the transcript (from c.86-49 to c.86-1) and premature termination.

CONCLUSIONS

Linkage study, bioinformatics prediction, and ex vivo transcript analysis suggest a novel deep intronic variant adjacent to 5-prime of exon 2 of COL2A1, affecting exon 2 splicing, as a potential cause of ocular-STL in a large family. To our knowledge, this is the first report of an intronic variant around exon 2 as a cause of ocular-STL while a series of variants in the coding region of exon 2, a dispensable alternative-splicing exon for extraocular tissues, in COL2A1 have been reported to cause Stickler syndrome-related ocular phenotype alone.

摘要

目的

鉴定一个四代同堂的中国大家庭中早发性高度近视(eoHM)/眼型斯帝尔综合征(ocular-STL)的致病基因突变。

方法

收集一个 eoHM/ocular-STL 家系的四代成员的基因组 DNA 和临床资料。先对一名受累成员进行全外显子组测序进行初步筛查。先对与常染色体显性遗传 eoHM 和斯帝尔综合征相关的候选基因座进行微卫星标记连锁扫描。然后采用 Sanger 测序检测潜在的变异。采用迷你基因体外实验检测候选变异的致病性。

结果

该家系 8 名患者和 5 名无眼部异常的健康成员参与了本研究。这些患者均患有高度近视,伴其它不同的眼部表型,但无眼部以外的异常。全外显子组测序未在已知与疾病相关的所有基因中发现任何潜在的致病变异。候选基因座连锁扫描将 eoHM/ocular-STL 定位在 COL2A1 周围的标记物上,D12S1590 处的最大 lod 得分θ=0.331。通过 Sanger 测序发现 COL2A1 第 1 内含子 c.86-50C>G 为新的深内含子变异,该变异在家系中与 eoHM/ocular-STL 共分离。迷你基因体外剪接实验证实,该变异在第 2 外显子的经典剪接位点前 49 个碱基处创建了一个新的剪接受体,导致转录本中增加了 49 个碱基片段(从 c.86-49 到 c.86-1),并导致提前终止。

结论

连锁研究、生物信息学预测和体外转录分析提示 COL2A1 外显子 2 上游紧邻 5′端的一个新的深内含子变异可能是导致该大家系眼型斯帝尔综合征的潜在原因。据我们所知,这是首个报道的外显子 2 周围内含子变异导致眼型斯帝尔综合征的案例,而 COL2A1 外显子 2 编码区的一系列变异已被报道为仅导致斯帝尔综合征相关的眼部表型。

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