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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Genome-wide identification and functional annotation of miRNAs in anti-inflammatory plant and their cross-kingdom regulation in Homo sapiens
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Genome-wide identification and functional annotation of miRNAs in anti-inflammatory plant and their cross-kingdom regulation in Homo sapiens

机译:抗炎植物中MiRNA的基因组鉴定和功能诠释及其在己锭中的跨王国调控

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摘要

MicroRNAs (miRNAs) are newly discovered non-coding small (similar to 17-24 nucleotide) RNAs that regulate gene expression of its target mRNA at the post-transcriptional levels. In this study, total 12,593 ESTs of Curcuma longa were taken from database of expressed sequence tags (dbEST) and clustered into 2821 contigs using EGassembler web server. Precursor miRNAs (pre-miRNAs) were predicted from these contigs that folded into stem-loop structure using MFold server. Thirty-four mature C. longa miRNAs (clo-miRNAs) were identified from pre-miRNAs having targets involved in various important functions of plant such as self-defence, growth and development, alkaloid metabolic pathway and ethylene signalling process. Sequence analysis of identified clo-miRNAs indicated that 56% miRNAs belong to ORF and 44% belong to non-ORF region. clo-mir-5 and clo-mir-6 were established as the conserved miRNAs, whereas clo-mir-20 was predicted to be the most stable miRNA. Phylogenetic analysis carried out by molecular evolutionary genetics analysis (MEGA) software indicated close evolutionary relationship of clo-mir-5075 with osa-MIR5075. Further, identified clo-miRNAs were checked for their cross-kingdom regulatory potential. clo-mir-14 was found to regulate various gene transcripts in humans that has been further investigated for its biostability in foetal bovine serum (FBS). The results indicated higher degree of stability of clo-mir-14 (48h) in FBS. Thus, contribution of this miRNA to the cellular immune response during the inflamed condition of rheumatoid arthritis and adequate stability may make it a good choice for the therapeutic agent in near future.
机译:微小RNA(miRNA)被新发现的非编码小(类似于17-24个核苷酸)RNA,其调节其靶mRNA在转录后水平的基因表达。在这项研究中,从表达序列标签(DBEST)的数据库中获取12,593个曲线的12,593个EST,并使用EGAsseMbler Web服务器聚集成2821个Contig。预先从使用MFOLD服务器折叠到阀杆环结构中的这些Contig中预测前体miRNA(预先miRNA)。从预先映射的靶向植物的各种重要功能的靶标鉴定了三十四个成熟的C.Longa miRNA(Clo-miRNA)。鉴定的Clo-miRNA的序列分析表明,56%MiRNA属于ORF,44%属于非ORF区域。 Clo-miR-5和Clo-miR-6被确定为保守的miRNA,而Clo-miR-20预计是最稳定的miRNA。分子进化遗传学分析(MEGA)软件进行的系统发育分析表明CLO-MIR-5075与OSA-MIR5075的紧密进化关系。此外,检查其跨王国调节潜力的鉴定的Clo-miRNA。发现ClO-miR-14调节人类中的各种基因转录物,该转录物在胎儿牛血清(FBS)中进一步研究的生物稳定性。结果表明FBS中的Clo-miR-14(48h)的稳定性较高。因此,这种miRNA在风湿性关节炎的发炎条件下对细胞免疫反应的贡献可以使其在不久的将来成为治疗剂的良好选择。

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