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首页> 外文期刊>American Journal of Biochemistry and Biotechnology >Minimum Free Energy Based Evaluation of mRNAs Secondary Structures Constructed by 18 Clinically Significant Exonic Single Nucleotide PolymorphismsXSNPs) and Haplotypes of 5 Missense SNPs of RBI Gene
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Minimum Free Energy Based Evaluation of mRNAs Secondary Structures Constructed by 18 Clinically Significant Exonic Single Nucleotide PolymorphismsXSNPs) and Haplotypes of 5 Missense SNPs of RBI Gene

机译:基于最小自由能的18个具有临床意义的外显子单核苷酸多态性(XSNPs)和5个RBI基因错义SNPs单倍型构建的mRNA二级结构的评估

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摘要

Clinically significant 18 Single Nucleotide Polymorphisms (SNPs) from exon regions of Retinoblastoma gene (RBI) were analyzed to find out the structural variations in mRNAs. Online bioinformatic tools i.e., Vienna RNA, RNAfold were used for secondarystructure analysis of mRNAs. Predicted minimum Free Energy Change (MFE) was calculated for mRNAs structures. It has been observed that the average of predicted MFE value from 13 nonsense mutations was higher (0.76 kcal/mol) in comparison to 5 missense mutations. Presumably, 13 nonsense mutations are responsible for Nonsense Mediated mRNA Decay (NMD), therefore, excluded from haplotype analysis. From the statistical analysis all the thermodynamic data obtained from four SNP haplotypes are significant (p<0.05), followed by three-SNP haplotype data except Ensemble diversity (p<0.10). Interestingly, MEF of Centroid Secondary Structure is highly significant (p<0.01) in all the cases (Two-SNP haplotypes, Three-SNP haplotypes and Four-SNP haplotypes).
机译:分析了来自视网膜母细胞瘤基因(RBI)外显子区域的具有临床意义的18个单核苷酸多态性(SNP),以发现mRNA的结构变异。在线生物信息学工具,即,维也纳RNA,RNAfold被用于mRNA的二级结构分析。计算了mRNA结构的预测最小自由能变化(MFE)。已经观察到,与5个错义突变相比,来自13个无义突变的预测MFE值的平均值更高(0.76kcal / mol)。据推测,无义介导的mRNA衰变(NMD)负责13个无意义的突变,因此,不包括在单倍型分析中。从统计分析中,从四个SNP单倍型获得的所有热力学数据均很显着(p <0.05),其次是除了集合多样性(p <0.10)之外的三个SNP单倍型数据。有趣的是,质心二级结构的MEF在所有情况下(两个SNP单倍型,三个SNP单倍型和四个SNP单倍型)都非常显着(p <0.01)。

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