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基因型-表型关联分析揭示成骨不全症新的致病因素。

Genotype-Phenotype Association Analysis Reveals New Pathogenic Factors for Osteogenesis Imperfecta Disease.

作者信息

Shi Jingru, Ren Meng, Jia Jinmeng, Tang Muxue, Guo Yongli, Ni Xin, Shi Tieliu

机构信息

Center for Bioinformatics and Computational Biology, and the Institute of Biomedical Sciences, School of Life Sciences, East China Normal University, Shanghai, China.

Big Data and Engineering Research Center, Beijing Key Laboratory for Pediatric Diseases of Otolaryngology, Head and Neck Surgery, MOE Key Laboratory of Major Diseases in Children, Beijing Children's Hospital, National Center for Children's Health, Beijing Pediatric Research Institute, Capital Medical University, Beijing, China.

出版信息

Front Pharmacol. 2019 Oct 15;10:1200. doi: 10.3389/fphar.2019.01200. eCollection 2019.

Abstract

Osteogenesis imperfecta (OI), mainly caused by structural abnormalities of type I collagen, is a hereditary rare disease characterized by increased bone fragility and reduced bone mass. Clinical manifestations of OI mostly include multiple repeated bone fractures, thin skin, blue sclera, hearing loss, cardiovascular and pulmonary system abnormalities, triangular face, dentinogenesis imperfecta (DI), and walking with assistance. Currently, 20 causative genes with 18 subtypes have been identified for OI, of them, variations in and have been demonstrated to be major causative factors to OI. However, the complexity of the bone formation process indicates that there are potential new pathogenic genes associated with OI. To comprehensively explore the underlying mechanism of OI, we conducted association analysis between genotypes and phenotypes of OI diseases and found that mutations in and contributed to a large proportion of the disease phenotypes. We categorized the clinical phenotypes and the genotypes based on the variation types for those 155 OI patients collected from literature, and association study revealed that three phenotypes (bone deformity, DI, walking with assistance) were enriched in two variation types (the Gly-substitution missense and groups of frameshift, nonsense, and splicing variations). We also identified four novel variations (c.G3290A (p.G1097D), c.G3289C (p.G1097R), c.G3289A (p.G1097S), c.G3281A (p.G1094D)) in gene and two novel variations (c.G2332T (p.G778C), c.G2341T (p.G781C)) in gene , which could potentially contribute to the disease. In addition, we identified several new potential pathogenic genes (, , ) based on the integration of protein-protein interaction and pathway enrichment analysis. Our study provides new insights into the association between genotypes and phenotypes of OI and novel information for dissecting the underlying mechanism of the disease.

摘要

成骨不全症(OI)主要由I型胶原蛋白的结构异常引起,是一种遗传性罕见疾病,其特征为骨脆性增加和骨量减少。OI的临床表现大多包括多次反复骨折、皮肤薄、巩膜蓝染、听力丧失、心血管和肺部系统异常、三角脸、牙本质发育不全(DI)以及需借助辅助行走。目前,已确定20个致病基因及18个亚型与OI相关,其中, 和 的变异已被证明是OI的主要致病因素。然而,骨形成过程的复杂性表明,可能存在与OI相关的潜在新致病基因。为全面探究OI的潜在机制,我们对OI疾病的基因型和表型进行了关联分析,发现 和 的突变在很大程度上导致了疾病表型。我们根据从文献中收集的155例OI患者的变异类型对临床表型和基因型进行了分类,关联研究表明,三种表型(骨畸形、DI、需借助辅助行走)在两种变异类型(甘氨酸替代错义突变以及移码、无义及剪接变异组)中富集。我们还在基因 中鉴定出四个新变异(c.G3290A(p.G1097D)、c.G3289C(p.G1097R)、c.G3289A(p.G1097S)、c.G3281A(p.G1094D))以及在基因 中鉴定出两个新变异(c.G2332T(p.G778C)、c.G2341T(p.G781C)),这些变异可能导致该疾病。此外,我们基于蛋白质-蛋白质相互作用和通路富集分析的整合鉴定出几个新的潜在致病基因( 、 、 )。我们的研究为OI的基因型和表型之间的关联提供了新见解,并为剖析该疾病的潜在机制提供了新信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c57b/6803541/8d005010373b/fphar-10-01200-g001.jpg

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