MicroRNAs miR-26a, miR-26b, and miR-29b accelerate osteogenic differentiation of unrestricted somatic stem cells from human cord blood

被引:101
作者
Trompeter, Hans-Ingo [1 ]
Dreesen, Janine [1 ]
Hermann, Eugenie [1 ]
Iwaniuk, Katharina M. [1 ]
Hafner, Markus [2 ]
Renwick, Neil [2 ]
Tuschl, Thomas [2 ]
Wernet, Peter [1 ]
机构
[1] Univ Dusseldorf, Fac Med, Inst Transplantat Diagnost & Cell Therapeut ITZ, D-40225 Dusseldorf, Germany
[2] Rockefeller Univ, Howard Hughes Med Inst, Lab RNA Mol Biol, New York, NY 10065 USA
关键词
Cord blood stem cells; Osteogenic differentiation; MicroRNA expression; MicroRNA function; MicroRNA target identification; IN-VITRO DIFFERENTIATION; MEDIATED DOWN-REGULATION; OSTEOBLAST DIFFERENTIATION; TGF-BETA; PATHWAY; IDENTIFICATION; SIGNATURE; GENES; CYCLE; ICAT;
D O I
10.1186/1471-2164-14-111
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background: MicroRNAs are a population of short non-coding RNAs with widespread negative regulatory impact on mRNA translation. Unrestricted somatic stem cells (USSC) are a rare population in human cord blood that can be induced into cells representative of all three germinal layers. Here we analyzed the functional impact of miRNAs on the osteogenic differentiation in USSC. Results: Gene expression profiling identified 20 microRNAs that were consistently upregulated during osteogenic differentiation of two different USSC cell lines (SA5/73 and SA8/25). Bioinformatic target gene prediction indicated that among these microRNAs, miR-10a, -22, -26a, -26b, and -29b recognize transcripts that encode a set of proteins inhibiting osteogenesis. We subsequently verified osteo-inhibitory CDK6, CTNNBIP1, HDAC4, and TOB1 and osteo-promoting SMAD1 as targets of these microRNAs. In Western blot analyses demonstrated that endogenous levels of CDK6 and HDAC4 were downregulated during osteogenic differentiation of USSC and reduced following ectopic expression of miR-26a/b and miR-29b. In contrast, endogenous expression of SMAD1, targeted by miR-26a/b, was unaltered during osteogenic differentiation of USSC or following ectopic expression of miR-26a/b. Functional overexpression analyses using microRNA mimics revealed that miR-26a/b, as well as miR-29b strongly accelerated osteogenic differentiation of USSC as assessed by Alizarin-Red staining and calcium-release assays. Conclusions: miR-26a/b and miR-29b are upregulated during osteogenic differentiation of USSC and share target genes inhibiting osteogenesis. Furthermore, these microRNAs accelerate osteogenic differentiation, likely mediated by osteo-inhibitory proteins such as CDK6 and HDAC4.
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