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microRNAs: fine tuning of erythropoiesis

机译:microRNA:红细胞生成的微调

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Cell proliferation and differentiation is a complex process involving many cellular mechanisms. One of the best-studied phenomena in cell differentiation is erythrocyte development during hematopoiesis in vertebrates. In recent years, a new class of small, endogenous, non-coding RNAs called microRNAs (miRNAs) emerged as important regulators of gene expression at the post-transcriptional level. Thousands of miRNAs have been identified in various organisms, including protozoa, fungi, bacteria and viruses, proving that the regulatory miRNA pathway is conserved in evolution. There are many examples of miRNA-mediated regulation of gene expression in the processes of cell proliferation, differentiation and apoptosis, and in cancer genesis. Many of the collected data clearly show the dependence of the proteome of a cell on the qualitative and quantitative composition of endogenous miRNAs. Numerous specific miRNAs are present in the hematopoietic erythroid line. This review attempts to summarize the state of knowledge on the role of miRNAs in the regulation of different stages of erythropoiesis. Original experimental data and results obtained with bioinformatics tools were combined to elucidate the currently known regulatory network of miRNAs that guide the process of differentiation of red blood cells.
机译:细胞增殖和分化是涉及许多细胞机制的复杂过程。关于细胞分化的研究最多的现象之一是脊椎动物造血过程中的红细胞发育。近年来,一类称为microRNA(miRNA)的小型内源非编码RNA成为了转录后水平上重要的基因表达调节剂。在各种生物中,包括原生动物,真菌,细菌和病毒中已鉴定出成千上万的miRNA,证明了调控性miRNA途径在进化中是保守的。在细胞增殖,分化和凋亡以及癌症发生过程中,有许多miRNA介导的基因表达调控的例子。许多收集的数据清楚地表明了细胞蛋白质组对内源性miRNA的定性和定量组成的依赖性。造血类红系中存在许多特定的miRNA。这篇综述试图总结关于miRNA在红细胞生成不同阶段的调控中的作用的知识状态。结合原始的实验数据和使用生物信息学工具获得的结果,阐明了目前已知的miRNA调控网络,该网络指导红细胞的分化过程。

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