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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Detection of Allosteric Effects of lncRNA Secondary Structures Altered by SNPs in Human Diseases
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Detection of Allosteric Effects of lncRNA Secondary Structures Altered by SNPs in Human Diseases

机译:SNP在人类疾病中改变了LNCRNA二级结构的变构效应

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Recent studies have shown that structuralized long non-coding RNAs (lncRNAs) play important roles in genetic and epigenetic processes. The spatial structures of most lncRNAs can be altered by distinct in vivo and in vitro cellular environments, as well as by DNA structural variations, such as single-nucleotide polymorphisms (SNPs) and variants (SNVs). In the present study, we extended candidate SNPs that had linkage disequilibria with those significantly associated with lung diseases in genome-wide association studies in order to investigate potential disease mechanisms originating from SNP structural changes of host lncRNAs. Following accurate alignments, we recognized 115 ternary-relationship pairs among 41 SNPs, 10 lncRNA transcripts, and 1 type of lung disease (adenocarcinoma of the lung). Then, we evaluated the structural heterogeneity induced by SNP alleles by developing a local-RNA-structure alignment algorithm and employing randomized strategies to determine the significance of structural variation. We identified four ternary-relationship pairs that were significantly associated with SNP-induced lncRNA allosteric effects. Moreover, these conformational changes disrupted the interactive regions and binding affinities of lncRNA-HCG23 and TF-E2F6, suggesting that these may represent regulatory mechanisms in lung diseases. Taken together, our findings support that SNP-induced changes in lncRNA conformations regulate many biological processes, providing novel insight into the role of the lncRNA “structurome” in human diseases.
机译:最近的研究表明,结构化的长期非编码RNA(LNCRNA)在遗传和表观遗传过程中起重要作用。大多数LNCRNA的空间结构可以通过在体内和体外细胞环境中不同而改变,以及通过DNA结构变化,例如单核苷酸多态性(SNP)和变体(SNV)。在本研究中,我们扩展了候选SNP,这些SNP与基因组关联研究中的肺病显着相关的那些,以研究源于宿主LNCRNA的SNP结构变化的潜在疾病机制。在准确的对齐之后,我们在41个SNPS,10个rNCRNA转录物和1种肺病中获得115个三元关系对(肺的腺癌)。然后,通过开发局部RNA结构对准算法并采用随机策略来评估SNP等位基因诱导的结构异质性并采用随机策略来确定结构变异的重要性。我们确定了四个三元关系对,与SNP诱导的LNCRNA变性效应显着相关。此外,这些构象变化破坏了LNCRNA-HCG23和TF-E2F6的交互区域和结合亲和力,表明这些可能代表肺病中的调节机制。我们的研究结果支持,支持LNCRNA构象的SNP诱导的变化调节许多生物过程,提供了对LNCRNA“结构组”在人类疾病中的作用的新洞察力。

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