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A Computational Approach From Gene to Structure Analysis of the Human ABCA4 Transporter Involved in Genetic Retinal Diseases

机译:涉及遗传性视网膜疾病的人类ABCA4转运蛋白从基因到结构分析的计算方法

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Purpose: The aim of this article is to report the investigation of the structural features of ABCA4, a protein associated with a genetic retinal disease. A new database collecting knowledge of ABCA4 structure may facilitate predictions about the possible functional consequences of gene mutations observed in clinical practice. Methods: In order to correlate structural and functional effects of the observed mutations, the structure of mouse P-glycoprotein was used as a template for homology modeling. The obtained structural information and genetic data are the basis of our relational database (ABCA4Database). Results: Sequence variability among all ABCA4-deposited entries was calculated and reported as Shannon entropy score at the residue level. The three-dimensional model of ABCA4 structure was used to locate the spatial distribution of the observed variable regions. Our predictions from structural in silico tools were able to accurately link the functional effects of mutations to phenotype. The development of the ABCA4Database gathers all the available genetic and structural information, yielding a global view of the molecular basis of some retinal diseases. Conclusions: ABCA4 modeled structure provides a molecular basis on which to analyze protein sequence mutations related to genetic retinal disease in order to predict the risk of retinal disease across all possible ABCA4 mutations. Additionally, our ABCA4 predicted structure is a good starting point for the creation of a new data analysis model, appropriate for precision medicine, in order to develop a deeper knowledge network of the disease and to improve the management of patients.
机译:目的:本文的目的是报告对与遗传性视网膜疾病相关的蛋白质ABCA4的结构特征的研究。一个收集ABCA4结构知识的新数据库可能有助于对临床实践中观察到的基因突变的可能功能后果进行预测。方法:为了使观察到的突变的结构和功能作用相关,将小鼠P-糖蛋白的结构用作同源性建模的模板。获得的结构信息和遗传数据是我们关系数据库(ABCA4Database)的基础。结果:计算所有ABCA4沉积条目之间的序列变异性,并以残基水平的Shannon熵评分报告。 ABCA4结构的三维模型用于定位观察到的可变区域的空间分布。我们根据结构计算机软件的预测能够准确地将突变的功能效应与表型联系起来。 ABCA4Database的开发收集了所有可用的遗传和结构信息,从而产生了一些视网膜疾病分子基础的全局视图。结论:ABCA4建模的结构提供了分子基础,可在该分子基础上分析与遗传性视网膜疾病相关的蛋白序列突变,从而预测所有可能的ABCA4突变中视网膜疾病的风险。此外,我们的ABCA4预测结构是创建适用于精密医学的新数据分析模型的良好起点,以便开发更深入的疾病知识网络并改善患者管理。

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