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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Novel sequence variations in LAMA2 and SGCG genes modulating cis-acting regulatory elements and RNA secondary structure
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Novel sequence variations in LAMA2 and SGCG genes modulating cis-acting regulatory elements and RNA secondary structure

机译:LAMA2和SGCG基因中的新型序列变异调控顺式作用调控元件和RNA二级结构

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In this study, we detected new sequence variations in LAMA2 and SGCG genes in 5 ethnic populations, and analysed their effect on enhancer composition and mRNA structure. PCR amplification and DNA sequencing were performed and followed by bioinformatics analyses using ESEfinder as well as MFOLD software. We found 3 novel sequence variations in the LAMA2 (c.3174+22_23insAT and c.6085 +12delA) and SGCG (c.*102A/C) genes. These variations were present in 210 tested healthy controls from Tunisian, Moroccan, Algerian, Lebanese and French populations suggesting that they represent novel polymorphisms within LAMA2 and SGCG genes sequences. ESEfinder showed that the c.*102A/C substitution created a new exon splicing enhancer in the 3'UTR of SGCG genes, whereas the c.6085 +12delA deletion was situated in the base pairing region between LAMA2 mRNA and the U1snRNA spliceosomal components. The RNA structure analyses showed that both variations modulated RNA secondary structure. Our results are suggestive of correlations between mRNA folding and the recruitment of spliceosomal components mediating splicing, including SR proteins. The contribution of common sequence variations to mRNA structural and functional diversity will contribute to a better study of gene expression.
机译:在这项研究中,我们检测了5个民族中LAMA2和SGCG基因的新序列变异,并分析了它们对增强子组成和mRNA结构的影响。进行PCR扩增和DNA测序,然后使用ESEfinder和MFOLD软件进行生物信息学分析。我们在LAMA2(c.3174 + 22_23insAT和c.6085 + 12delA)和SGCG(c。* 102A / C)基因中发现了3个新颖的序列变异。这些变异存在于来自突尼斯,摩洛哥,阿尔及利亚,黎巴嫩和法国人口的210个经过测试的健康对照中,表明它们代表了LAMA2和SGCG基因序列内的新型多态性。 ESEfinder显示,c。* 102A / C替代在SGCG基因的3'UTR中创建了新的外显子剪接增强子,而c.6085 + 12delA缺失位于LAMA2 mRNA和U1snRNA剪接体成分之间的碱基配对区域。 RNA结构分析表明,两种变异均调节RNA二级结构。我们的结果表明,mRNA折叠与介导剪接的剪接体成分(包括SR蛋白)的募集之间存在相关性。共同序列变异对mRNA结构和功能多样性的贡献将有助于更好地研究基因表达。

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