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对影响慢性髓性白血病中伊马替尼反应的人有机阳离子转运体1(hOCT1)中与损伤相关的单核苷酸多态性(SNP)进行全面的计算机模拟分析。

Comprehensive in-silico analysis of damage associated SNPs in hOCT1 affecting Imatinib response in chronic myeloid leukemia.

作者信息

Soltani Ismael, Bahia Wael, Radhouani Assala, Mahdhi Abdelkarim, Ferchichi Salima, Almawi Wassim Y

机构信息

Molecular and Cellular Hematology Laboratory, Institut Pasteur de Tunis, Université Tunis El Manar, Tunis, Tunisia.

Research Unit of Clinical and Molecular Biology, Department of Biochemistry, Faculty of Pharmacy of Monastir, University of Monastir, Tunisia.

出版信息

Genomics. 2021 Jan;113(1 Pt 2):755-766. doi: 10.1016/j.ygeno.2020.10.007. Epub 2020 Oct 16.

Abstract

Non-synonymous single nucleotide polymorphisms (nsSNPs) in hOCT1 (encoded by SLC22A1 gene) are expected to affect Imatinib uptake in chronic myeloid leukemia (CML). In this study, sequence homology-based genetic analysis of a set of 270 coding SNPs identified 18 nsSNPs to be putatively damaging/deleterious using eight different algorithms. Subsequently, based on conservation of amino acid residues, stability analysis, posttranscriptional modifications, and solvent accessibility analysis, the possible structural-functional relationship was established for high-confidence nsSNPs. Furthermore, based on the modeling results, some dissimilarities of mutant type amino acids from wild-type amino acids such as size, charge, interaction and hydrophobicity were revealed. Three highly deleterious mutations consisting of P283L, G401S and R402G in SLC22A1 gene that may alter the protein structure, function and stability were identified. These results provide a filtered data to explore the effect of uncharacterized nsSNP and find their association with Imatinib resistance in CML.

摘要

人有机阳离子转运体1(hOCT1,由SLC22A1基因编码)中的非同义单核苷酸多态性(nsSNPs)预计会影响慢性髓性白血病(CML)中伊马替尼的摄取。在本研究中,基于序列同源性对一组270个编码SNP进行遗传分析,使用八种不同算法鉴定出18个nsSNPs可能具有损害性/有害性。随后,基于氨基酸残基的保守性、稳定性分析、转录后修饰和溶剂可及性分析,为高可信度的nsSNPs建立了可能的结构-功能关系。此外,基于建模结果,揭示了突变型氨基酸与野生型氨基酸在大小、电荷、相互作用和疏水性等方面的一些差异。鉴定出SLC22A1基因中三个高度有害的突变,分别为P283L、G401S和R402G,这些突变可能会改变蛋白质的结构、功能和稳定性。这些结果提供了一个经过筛选的数据,以探索未表征的nsSNP的作用,并发现它们与CML中伊马替尼耐药性的关联。

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