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[一个眼皮肤白化病家系的酪氨酸酶基因变异研究]

[Study on TYR gene variant from a pedigree with oculocutaneous albinism].

作者信息

Zhang Yingzhen, Jin Caihong, Guo Min, Li Duofu, Chai Lianming, Wu Yang, Li Donglu

机构信息

Gansu Medical College, Pingliang, Gansu 744000, China.

出版信息

Zhonghua Yi Xue Yi Chuan Xue Za Zhi. 2021 Sep 10;38(9):833-837. doi: 10.3760/cma.j.cn511374-20200609-00422.

Abstract

OBJECTIVE

To analyze gene variants in a Chinese pedigree with oculocutaneous albinism (OCA).

METHODS

Gene sequencing of the proband and his parents was performed using chip capture high-throughput sequencing and Sanger sequencing techniques, and PolyPhen-2, SIFT, MutationTaster, and FATHMM software were used to predict the function of new variants. At the same time,the pedigree and variant genes of 4 albinism patients from this pedigree were analyzed.

RESULTS

Sequencing results showed that the proband's TYR gene (NM_000372) has c.230G>A (p.Arg77Gln) and c.120_121insG (p.Asp42GlyfsTer35) compound heterozygous variants. The proband's father carries c.230G>A heterozygous variant, and the mother carries c.120_121insG heterozygous variant, indicating that the proband's two variants are from his father and mother. The former is a known missense variant, which can cause abnormal or loss of the original function of the protein polypeptide chain. The latter c.120_121insG(p.Asp42GlyfsTer35) is an unreported frameshift variant of the TYR gene subregion (EX1; CDS1). PolyPhen-2, SIFT, MutationTaster and FATHMM predictions are all prompted as "harmful variants". This variant caused the amino acid encoded protein to terminate prematurely, producing a truncated protein, which eventually formed a 76-amino acid short-type TYR protein instead of the 529-amino acid wild-type TYR protein. Through the pedigree analysis, the four patients in the pedigree are all of the same type of compound heterozygous variants, and the disease-causing genes are all from the patient's parents. They belong to a special form of consanguineous marriage within 5 generations.

CONCLUSION

The compound heterozygous variants of c.230G>A (p.Arg77Gln) and c.120_121insG (p.Asp42GlyfsTer35) of the TYR gene may underlie the disease in this pedigree. The gene sequencing results enrich the variant spectrum of the TYR gene, and has facilitated molecular diagnosis for the patient.

摘要

目的

分析一个中国眼皮肤白化病(OCA)家系中的基因变异。

方法

采用芯片捕获高通量测序和桑格测序技术对先证者及其父母进行基因测序,并使用PolyPhen-2、SIFT、MutationTaster和FATHMM软件预测新变异的功能。同时,分析该家系中4例白化病患者的家系情况及变异基因。

结果

测序结果显示,先证者的TYR基因(NM_000372)存在c.230G>A(p.Arg77Gln)和c.120_121insG(p.Asp42GlyfsTer35)复合杂合变异。先证者的父亲携带c.230G>A杂合变异,母亲携带c.120_121insG杂合变异,表明先证者的两个变异分别来自其父亲和母亲。前者是已知的错义变异,可导致蛋白质多肽链的原有功能异常或丧失。后者c.120_121insG(p.Asp42GlyfsTer35)是TYR基因亚区域(EX1;CDS1)未报道的移码变异。PolyPhen-2、SIFT、MutationTaster和FATHMM预测均提示为“有害变异”。该变异导致编码的蛋白质氨基酸提前终止,产生截短蛋白,最终形成一个76个氨基酸的短型TYR蛋白,而非529个氨基酸的野生型TYR蛋白。通过家系分析,家系中的4例患者均为同一类型的复合杂合变异,致病基因均来自患者父母。他们属于5代以内特殊形式的近亲结婚。

结论

TYR基因的c.230G>A(p.Arg77Gln)和c.120_121insG(p.Asp42GlyfsTer35)复合杂合变异可能是该家系疾病的病因。基因测序结果丰富了TYR基因的变异谱,有助于对患者进行分子诊断。

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