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成年I型戈谢病患者的生化和分子特征以及Leu444Pro(印度常见的戈谢病突变)的携带者频率分析

Biochemical and molecular characterization of adult patients with type I Gaucher disease and carrier frequency analysis of Leu444Pro - a common Gaucher disease mutation in India.

作者信息

Sheth Jayesh, Pancholi Dhairya, Mistri Mehul, Nath Payal, Ankleshwaria Chitra, Bhavsar Riddhi, Puri Ratna, Phadke Shubha, Sheth Frenny

机构信息

FRIGE's Institute of Human Genetics, FRIGE House, Jodhpur Gam Road, Satellite, Ahmedabad, Gujarat, 380015, India.

Center of Medical Genetics, Sir Ganga Ram Hospital, Rajinder Nagar, New Delhi, 110060, India.

出版信息

BMC Med Genet. 2018 Oct 1;19(1):178. doi: 10.1186/s12881-018-0687-5.

Abstract

BACKGROUND

Gaucher disease is a rare pan-ethnic disorder which occurs due to an increased accumulation of undegraded glycolipid glucocerebroside inside the cells' lysosomes. A beta-Glucosidase (GBA) gene defect results in glucocerebrosidase enzyme deficiency. Though the disease is mainly diagnosed in childhood, the adult manifestation is often missed or identified late due to the failure to recognize the heterogeneous clinical presentation. The present study includes seven unrelated Indian adult patients (age range: 20-40 years) having splenomegaly, with or without hepatomegaly, cytopenia and bone abnormality.

METHODS

The biochemical investigation implicated measuring plasma chitotriosidase enzyme activity followed by confirmatory test of β-Glucosidase enzyme activity from the leukocytes. The molecular characterization involved patients' initial screening for the common Gaucher mutation (Leu444Pro). Later, all patients were subjected to whole GBA gene coding region study using bidirectional Sanger sequencing. The population screening for common Gaucher disease mutation (Leu444Pro) was executed in 1200 unrelated and healthy Indian subjects by Restriction Fragment Length Polymorphism-Polymerase Chain Reaction technique. The allele frequency was calculated using Hardy-Weinberg formula.

RESULTS

The biochemical analysis revealed a significant reduction in the β-Glucosidase activity in all the patients. Also, an elevated level of plasma Chitotriosidase activity in five patients supported their diagnosis of Gaucher disease. Sanger sequencing established four patients with homozygous variation and three patients with compound heterozygous variation in GBA gene. This study uncovers two missense variants (Ala448Thr and Val17Gly) not previously reported in Gaucher disease patients. Also the known mutations like Leu444Pro, Arg329Cys, Asp315Asn, Ser125Arg, and Arg395Cys were identified in these patients. The homology modeling suggested the destabilization of the protein structure due to novel variants. The Leu444Pro mutation screening in the Indian population spotted two people as a carrier. This emerged the carrier frequency of 1:600 along with wild-type allele frequency 0.97113 and mutant allele frequency 0.02887.

CONCLUSIONS

The study reports novel and known variants identified in the GBA gene in seven adult patients. The given study is the first report on the carrier frequency of the Leu444Pro mutant allele in an Indian population which will help understanding the burden and susceptibility of Gaucher disease to affect next generation in India.

摘要

背景

戈谢病是一种罕见的泛种族疾病,由于细胞溶酶体内未降解的糖脂葡萄糖脑苷脂积累增加而发生。β-葡萄糖苷酶(GBA)基因缺陷导致葡萄糖脑苷脂酶缺乏。尽管该疾病主要在儿童期被诊断出来,但由于未能认识到其异质性临床表现,成人期表现往往被漏诊或诊断较晚。本研究纳入了7名无亲缘关系的印度成年患者(年龄范围:20 - 40岁),他们有脾肿大,伴有或不伴有肝肿大、血细胞减少和骨骼异常。

方法

生化检查包括测定血浆壳三糖苷酶活性,随后对白细胞中的β-葡萄糖苷酶活性进行确诊试验。分子特征分析包括对患者进行常见戈谢突变(Leu444Pro)的初步筛查。后来,所有患者都使用双向桑格测序法对整个GBA基因编码区进行研究。通过限制性片段长度多态性-聚合酶链反应技术在1200名无亲缘关系的健康印度受试者中进行常见戈谢病突变(Leu444Pro)的群体筛查。使用哈迪-温伯格公式计算等位基因频率。

结果

生化分析显示所有患者的β-葡萄糖苷酶活性显著降低。此外,5名患者血浆壳三糖苷酶活性升高支持了他们戈谢病的诊断。桑格测序确定4名患者GBA基因存在纯合变异,3名患者存在复合杂合变异。本研究发现了两个此前未在戈谢病患者中报道的错义变异(Ala448Thr和Val17Gly)。在这些患者中还鉴定出了如Leu444Pro、Arg329Cys、Asp315Asn、Ser125Arg和Arg395Cys等已知突变。同源建模表明新变异导致蛋白质结构不稳定。在印度人群中对Leu444Pro突变的筛查发现有两人为携带者。由此得出携带者频率为1:600,野生型等位基因频率为0.97113,突变等位基因频率为0.02887。

结论

该研究报告了在7名成年患者中GBA基因鉴定出的新变异和已知变异。该研究是关于印度人群中Leu444Pro突变等位基因携带者频率的首次报告,这将有助于了解戈谢病在印度影响下一代的负担和易感性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd25/6167838/ce66af170fa5/12881_2018_687_Fig1_HTML.jpg

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