Predicting the Impact of PHEX, FGF23 and DMP1 Gene Variants Found in Malaysian Malay Patients with Hypophosphataemic Rickets Through In Silico Analysis of Protein Function and mRNA Secondary Structure

N. N. Razali, Hwu Ting Tzer, H. King, M. Kennerson, Karuppiah Thilakavathy
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引用次数: 2

Abstract

Hypophosphataemic Rickets (HR) is a rare bone disorder characterised by chronic hypophosphataemia caused by defective phosphate reabsorption in the renal tubules. Variants in phosphate-regulating endopeptidase homolog, X-linked (PHEX), fibroblast growth factor-23 (FGF23) and dentin matrix protein-1 (DMP1) genes contribute to X-linked dominant, autosomal dominant and autosomal recessive forms of HR, respectively. In this study, four Malaysian patients’ DNA samples were subjected to polymerase chain reaction and Sanger sequencing to identify the types and locations of the variants. Then, in silico study was conducted based on the variants found to predict the effects of amino acid substitution on protein functions using SIFT and PolyPhen-2 software and RNAfold was used to construct the mRNA secondary structure. Mutational analyses had revealed two variants in PHEX; c.10G>C (E4Q), c.1970A>G (Y657C), one mutation in FGF23; c.716C>T (T239M) and three variants on DMP1; c.309A>T (S69C), c.1322C>T (S406S), c.1334G>A (E410E). The variants in these Malay patients were previously reported in different ethnic HR patients. Protein prediction programs suggested that the PHEX Y657C and DMP1 S69C variants may affect protein function. All variants were predicted to alter the secondary mRNA structure. These findings suggest that these missense and silent variants may lead to changes in protein function and mRNA secondary structure that are associated with the manifestation of HR phenotype.
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通过蛋白质功能和mRNA二级结构的计算机分析预测马来西亚马来人低磷佝偻病患者中发现的PHEX、FGF23和DMP1基因变异的影响
低磷血症佝偻病(HR)是一种罕见的骨骼疾病,其特征是由肾小管磷酸盐重吸收缺陷引起的慢性低磷血症。磷酸调节内多肽酶同源基因、x连锁(PHEX)、成纤维细胞生长因子-23 (FGF23)和牙本质基质蛋白-1 (DMP1)基因的变异分别导致x连锁显性、常染色体显性和常染色体隐性HR。在这项研究中,对4名马来西亚患者的€™DNA样本进行聚合酶链反应和Sanger测序,以确定变异的类型和位置。然后,利用SIFT和polyphen2软件对发现的变异进行了硅片研究,预测氨基酸取代对蛋白质功能的影响,并利用RNAfold构建mRNA二级结构。突变分析揭示了PHEX的两个变体;C . 10g >C (E4Q), C . 1970a >G (Y657C), FGF23 1个突变;c.716C>T (T239M)和DMP1上的三个变体;c.309A>T (S69C), c.1322C>T (S406S), c.1334G>A (E410E)。这些马来患者的变异先前在不同种族的HR患者中有报道。蛋白质预测程序提示PHEX Y657C和DMP1 S69C变异可能影响蛋白质功能。预测所有变异都会改变次级mRNA结构。这些发现表明,这些错义和沉默变异可能导致与HR表型表现相关的蛋白质功能和mRNA二级结构的改变。
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