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与 III 型酪氨酸血症和 Hawkinsinuria 相关的人 HPPD 基因中错义 SNP 的计算机分析。

In-Silico analysis of missense SNPs in Human HPPD gene associated with Tyrosinemia type III and Hawkinsinuria.

机构信息

Department of Biotechnology, Faculty of Life Sciences, University of Central Punjab, Lahore, 54000, Pakistan.

Department of Biochemistry and Biotechnology, University of Gujrat, 50700, Pakistan.

出版信息

Comput Biol Chem. 2019 Jun;80:284-291. doi: 10.1016/j.compbiolchem.2019.04.007. Epub 2019 Apr 25.

Abstract

HPPD gene codes a dioxygenase enzyme involved in catalysis of different molecules such as tyrosine and phenylalanine by oxidizing them to produce energy. A single change in protein can trigger serious genetic disorders like Tyrosinemia type III and Hawkinsinuria. This study aims to identify the functional missense SNPs of the HPPD gene by using multiple computational tools. All deleterious missense SNPs retrieved from Ensembl and OMIM database were evaluated through six different software. Ultimately, out of 148 missense SNPs, only 27 were confirmed as diseasecausing SNPs by developing a consensus approach. These damaging SNPs were further examined to evaluate their impact on protein stability and energy including their evolutionary conservation. Native and mutated proteins structures were also designed and superimposed by I-TASSER and PyMol respectively. This work results in narrowing down missense SNPs which are still not confirmed experimentally and demands the confirmation by GWAS data. Thus, these missense SNPs could directly or indirectly destabilize the amino acid interactions causing functional deviations of protein.

摘要

HPPD 基因编码一种双加氧酶,通过氧化酪氨酸和苯丙氨酸等不同分子来产生能量,从而参与这些分子的催化。蛋白质的单一变化可能会引发严重的遗传疾病,如 III 型酪氨酸血症和 Hawkinsinuria。本研究旨在通过多种计算工具鉴定 HPPD 基因的功能错义 SNP。从 Ensembl 和 OMIM 数据库中检索到的所有有害错义 SNP 都通过六种不同的软件进行了评估。最终,在 148 个错义 SNP 中,只有 27 个通过开发共识方法被确认为致病 SNP。这些具有破坏性的 SNP 进一步被检测,以评估它们对蛋白质稳定性和能量的影响,包括它们的进化保守性。天然和突变蛋白结构分别通过 I-TASSER 和 PyMol 进行设计和叠加。这项工作的结果是缩小了仍然没有通过实验证实的错义 SNP 的范围,并需要通过 GWAS 数据进行证实。因此,这些错义 SNP 可能直接或间接地破坏氨基酸相互作用,导致蛋白质功能发生偏差。

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