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首页> 外文期刊>Stem Cells >Combined characterization of microRNA and mRNA profiles delineates early differentiation pathways of CD133+ and CD34+ hematopoietic stem and progenitor cells.
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Combined characterization of microRNA and mRNA profiles delineates early differentiation pathways of CD133+ and CD34+ hematopoietic stem and progenitor cells.

机译:microRNA和mRNA谱的组合表征描绘了CD133 +和CD34 +造血干细胞和祖细胞的早期分化途径。

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MicroRNAs (miRNAs) have been shown to play an important role in hematopoiesis. To elucidate the role of miRNAs in the early steps of hematopoiesis, we directly compared donor-matched CD133(+) cells with the more differentiated CD34(+) CD133(-) and CD34(-) CD133(-) cells from bone marrow on the miRNA and mRNA level. Using quantitative whole genome miRNA microarray and sequencing-based profiling, we found that between 109 (CD133(+) ) and 216 (CD34(-) CD133(-) ) miRNAs were expressed. Quantification revealed that the 25 highest expressed miRNAs accounted for 73% of the total miRNA pool. miR-142-3p was the highest expressed miRNA with up to 2,000 copies per cell in CD34(+) CD133(-) cells. Eighteen miRNAs were significantly differentially expressed between CD133(+) and CD34(+) CD133(-) cells. We analyzed their biological role by examining the coexpression of miRNAs and its bioinformatically predicted mRNA targets and luciferase-based reporter assays. We provide the first evidence for a direct regulation of CD133 by miR-142-3p as well as tropomyosin 1 and frizzled homolog 5 by miR-29a. Overexpression of miRNAs in CD133(+) cells demonstrated that miR-142-3p has a negative influence on the overall colony-forming ability. In conclusion, the miRNAs expressed differentially between the CD133(+) and CD34(+) CD133(-) cells are involved in inhibition of differentiation, prevention of apoptosis, and cytoskeletal remodeling. These results are highly relevant for stem cell-based therapies with CD133(+) cells and delineate for the first time how the stem cell character of CD133(+) cells is defined by the expression of specific miRNAs.
机译:MicroRNA(miRNA)已显示在造血中起重要作用。为了阐明miRNA在造血早期的作用,我们直接比较了供体匹配的CD133(+)细胞与骨髓中分化程度更高的CD34(+)CD133(-)和CD34(-)CD133(-)细胞。 miRNA和mRNA水平。使用定量全基因组miRNA微阵列和基于测序的分析,我们发现在109(CD133(+))和216(CD34(-)CD133(-))之间表达了miRNA。定量显示,表达最高的25个miRNA占总miRNA库的73%。 miR-142-3p是表达最高的miRNA,在CD34(+)CD133(-)细胞中每个细胞最多可复制2,000个拷贝。 18个miRNA在CD133(+)和CD34(+)CD133(-)细胞之间显着差异表达。我们通过检查miRNA的共表达及其生物信息学预测的mRNA靶标和基于萤光素酶的报告基因检测法分析了它们的生物学作用。我们提供了第一个证据,证明miR-142-3p可以直接调控CD133,miR-29a可以保护原肌球蛋白1和卷曲同源物5。 CD133(+)细胞中miRNA的过表达证明miR-142-3p对总体菌落形成能力具有负面影响。总之,在CD133(+)和CD34(+)CD133(-)细胞之间差异表达的miRNA与抑制分化,防止凋亡和细胞骨架重塑有关。这些结果与基于CD133(+)细胞的干细胞疗法高度相关,并首次描绘了如何通过特定miRNA的表达来定义CD133(+)细胞的干细胞特性。

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