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MicroRNA expression profiling of heart tissue during fetal development

机译:胎儿发育过程中心脏组织的MicroRNA表达谱

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microRNAs (miRNAs) are important both in early cardiogenesis and in the process of heart maturation. The aim of this study was to determine the stage-specific expression of miRNAs in human fetal heart in order to identify valuable targets for further study of heart defects. Affymetrix microarrays were used to obtain miRNA expression profiles from human fetal heart tissue at 5, 7, 9 and 23 weeks of gestation. To identify differentially expressed miRNAs at each timepoint, linear regression analysis by the R limma algorithm was employed. Hierarchical clustering analysis was conducted with Cluster 3.0 software. Gene Ontology analysis was carried out for miRNAs from different clusters. Commonalities in miRNA families and genomic localization were identified, and the differential expression of selected miRNAs from different clusters was verified by quantitative polymerase chain reaction (qPCR). A total of 703 miRNAs were expressed in human fetal heart. Of these, 288 differentially expressed miRNAs represented 5 clusters with different expression trends. Several clustered miRNAs also shared classification within miRNA families or proximal genomic localization. qPCR confirmed the expression patterns of selected miRNAs. miRNAs within the 5 clusters were predicted to target genes vital for heart development and to be involved in cellular signaling pathways that affect heart structure formation and heart-associated cellular events. In conclusion, to the best of our knowledge, this is the first miRNA expression profiling study of human fetal heart tissue. The stage-specific expression of specific miRNAs suggests potential roles at distinct time-points during fetal heart development.
机译:microRNA(miRNA)在早期心脏发生和心脏成熟过程中都非常重要。这项研究的目的是确定人类胎儿心脏中miRNA的阶段特异性表达,从而确定有价值的靶点,以进一步研究心脏缺陷。 Affymetrix微阵列用于在妊娠5、7、9和23周时从人胎儿心脏组织获得miRNA表达谱。为了鉴定在每个时间点的差异表达的miRNA,采用了R limma算法进行的线性回归分析。使用Cluster 3.0软件进行了层次聚类分析。对来自不同簇的miRNA进行了基因本体分析。确定了miRNA家族和基因组定位的共性,并通过定量聚合酶链反应(qPCR)验证了来自不同簇的所选miRNA的差异表达。在人类胎儿心脏中共表达了703个miRNA。其中,288个差异表达的miRNA代表5个簇,具有不同的表达趋势。几个成簇的miRNA还在miRNA家族或近端基因组定位中共享分类。 qPCR证实了所选miRNA的表达模式。预测5个簇中的miRNA靶向心脏发育至关重要的基因,并参与影响心脏结构形成和与心脏相关的细胞事件的细胞信号通路。总而言之,就我们所知,这是人类胎儿心脏组织的第一个miRNA表达谱研究。特定miRNA的阶段特异性表达表明在胎儿心脏发育过程中不同时间点的潜在作用。

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