首页> 外文期刊>Stem cells and development >MicroRNA hsa-miR-135b regulates mineralization in osteogenic differentiation of human unrestricted somatic stem cells.
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MicroRNA hsa-miR-135b regulates mineralization in osteogenic differentiation of human unrestricted somatic stem cells.

机译:MicroRNA hsa-miR-135b调节人非限制性体细胞干细胞成骨分化中的矿化作用。

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Unrestricted somatic stem cells (USSCs) have been recently identified in human umbilical cord blood and have been shown to differentiate into lineages representing all 3 germ layers. To characterize microRNAs that may regulate osteogenic differentiation of USSCs, we carried out expression analysis for 157 microRNAs using quantitative RT-PCR before and after osteogenic induction (t = 0.5, 24, 72, 168, 216 h). Three microRNAs, hsa-miR-135b, hsa-miR-224, and hsa-miR-31, were consistently down-regulated during osteogenesis of USSC line 1. Hsa-miR-135b was shown to be the most profoundly down-regulated in osteogenesis of USSC line 1 and further confirmed to be down-regulated in the osteogenic differentiation of 2 additional USSC lines. Function of hsa-miR-135b in osteogenesis of USSCs was examined by retroviral overexpression, which resulted in an evident decreased mineralization, indicating that hsa-miR-135b down-regulation is functionally important for full osteogenic differentiation of USSCs. MicroRNAs have been shown to regulate negatively expression of their target gene(s). To identify putative targets of hsa-miR-135b, we performed cDNA microarray expression analysis. We selected in total 10 transcripts that were down-regulated (>or=2-fold) in response to hsa-miR-135b overexpression at day 7 and day 9 of osteogenic differentiation. The function of most of these targets in human osteogenesis is unknown and requires further investigation. Markedly, quantitative RT-PCR data showed decreased expression of osteogenic markers IBSP and Osterix, both known to be involved in bone mineralization, in osteogenesis of USSCs that overexpress hsa-miR-135b. This finding suggests that hsa-miR-135b may control osteoblastic differentiation of USSCs by regulating expression of bone-related genes.
机译:最近在人的脐带血中发现了无限制的体干细胞(USSC),并且已经显示出它们可以分化为代表所有3个细菌层的谱系。为了表征可能调节USSC成骨分化的microRNA,我们在成骨诱导前后(t = 0.5、24、72、168、216 h)使用定量RT-PCR对157个microRNA进行了表达分析。在USSC品系1的成骨过程中,三个microRNA,即hsa-miR-135b,hsa-miR-224和hsa-miR-31始终被下调。 USSC品系1的成骨作用,并进一步证实在另外2个USSC品系的成骨分化中被下调。 hsa-miR-135b在USSC的成骨中的功能已通过逆转录病毒过表达进行了检查,这导致矿化作用明显降低,表明hsa-miR-135b下调对于USSC的完整成骨分化在功能上很重要。微小RNA已经显示出负调控其靶基因的表达。为了鉴定hsa-miR-135b的假定靶标,我们进行了cDNA微阵列表达分析。我们选择了成骨分化第7天和第9天响应hsa-miR-135b过表达而下调(>或= 2倍)的总共10个转录本。这些靶标大多数在人类成骨中的功能尚不清楚,需要进一步研究。值得注意的是,定量RT-PCR数据显示,在过度表达hsa-miR-135b的USSC的成骨过程中,成骨标记IBSP和Osterix的表达均降低,这两个已知参与骨矿化。这一发现表明,hsa-miR-135b可能通过调节骨相关基因的表达来控制USSC的成骨细胞分化。

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