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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >In silico analysis of Single Nucleotide Polymorphisms (SNPs) in human BRAF gene
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In silico analysis of Single Nucleotide Polymorphisms (SNPs) in human BRAF gene

机译:人类BRAF基因中单核苷酸多态性(SNP)的计算机分析

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BRAF gene mutations are frequently seen in both inherited and somatic diseases. However, the harmful mutations for BRAF gene have not been predicted in silico. Owing to the importance of BRAF gene in cell division, differentiation and secretion processes, the functional analysis was carried out to explore the possible association between genetic mutations and phenotypic variations. Genomic analysis of BRAF was initiated with SIFT followed by PolyPhen and SNPs&GO servers to retrieve the 85 deleterious non-synonymous SNPs (nsSNPs) from dbSNP. A total of 5 mutations i.e. c.406T>G (S136A), c.1446G>T (R462I), c.1556 A>G (K499E), c.1860 T>A (V600E) and c.2352 C>T (P764L) that are found to exert benign effects on the BRAF protein structure and function were chosen for further analysis. Protein structural analysis with these amino acid variants was performed by using I-Mutant, FOLD-X, HOPE, NetSurfP, Swiss PDB viewer, Chimera and NOMAD-Ref servers to check their solvent accessibility, molecular dynamics and energy minimization calculations. Our in silico analysis suggested that S136A and P764L variants of BRAF could directly or indirectly destabilize the amino acid interactions and hydrogen bond networks thus explain the functional deviations of protein to some extent. Screening for BRAF, S136A and P764Lvariants may be useful for disease molecular diagnosis and also to design the molecular inhibitors of BRAF pathways.
机译:在遗传性和躯体疾病中都经常见到BRAF基因突变。然而,尚未在计算机上预测BRAF基因的有害突变。由于BRAF基因在细胞分裂,分化和分泌过程中的重要性,因此进行了功能分析,以探索遗传突变与表型变异之间的可能联系。首先使用SIFT进行BRAF的基因组分析,然后使用PolyPhen和SNPs&GO服务器从dbSNP中检索85个有害的非同义SNP(nsSNPs)。共有5个突变,即c406T> G(S136A),c.1446G> T(R462I),c.1556 A> G(K499E),c.1860 T> A(V600E)和c.2352 C> T(P764L选择发现对BRAF蛋白结构和功能有良性影响的)进行进一步分析。使用I-Mutant,FOLD-X,HOPE,NetSurfP,Swiss PDB查看器,Chimera和NOMAD-Ref服务器对这些氨基酸变体进行蛋白质结构分析,以检查其溶剂可及性,分子动力学和能量最小化计算。我们的计算机分析表明,BRAF的S136A和P764L变体可以直接或间接破坏氨基酸相互作用和氢键网络的稳定性,因此可以在某种程度上解释蛋白质的功能差异。筛选BRAF,S136A和P764L变体可能对疾病分子诊断有用,也可用于设计BRAF途径的分子抑制剂。

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