Oralová V, Matalová E, Janečková E, Drobná Krejčí E, Knopfová L, Šnajdr P, Tucker A S, Veselá I, Šmarda J, Buchtová M
Institute of Animal Physiology and Genetics CAS, v.v.i., Brno, Czech Republic; Department of Experimental Biology, Faculty of Science, Masaryk University, Brno, Czech Republic.
Institute of Animal Physiology and Genetics CAS, v.v.i., Brno, Czech Republic; Department of Physiology, University of Veterinary and Pharmaceutical Sciences, Brno, Czech Republic.
Bone. 2015 Jul;76:97-106. doi: 10.1016/j.bone.2015.02.031. Epub 2015 Apr 4.
The Myb locus encodes the c-Myb transcription factor involved in controlling a broad variety of cellular processes. Recently, it has been shown that c-Myb may play a specific role in hard tissue formation; however, all of these results were gathered from an analysis of intramembranous ossification. To investigate a possible role of c-Myb in endochondral ossification, we carried out our study on the long bones of mouse limbs during embryonic development. Firstly, the c-myb expression pattern was analyzed by in situ hybridization during endochondral ossification of long bones. c-myb positive areas were found in proliferating as well as hypertrophic zones of the growth plate. At early embryonic stages, localized expression was also observed in the perichondrium and interdigital areas. The c-Myb protein was found in proliferating chondrocytes and in the perichondrium of the forelimb bones (E14.5-E17.5). Furthermore, protein was detected in pre-hypertrophic as well as hypertrophic chondrocytes. Gain-of-function and loss-of-function approaches were used to test the effect of altered c-myb expression on chondrogenesis in micromass cultures established from forelimb buds of mouse embryos. A loss-of-function approach using c-myb specific siRNA decreased nodule formation, as well as downregulated the level of Sox9 expression, a major marker of chondrogenesis. Transient c-myb overexpression markedly increased the formation of cartilage nodules and the production of extracellular matrix as detected by intense staining with Alcian blue. Moreover, the expression of early chondrogenic genes such as Sox9, Col2a1 and activity of a Col2-LUC reporter were increased in the cells overexpressing c-myb while late chondrogenic markers such as Col10a1 and Mmp13 were not significantly changed or were downregulated. Taken together, the results of this study demonstrate that the c-Myb transcription factor is involved in the regulation and promotion of endochondral bone formation.
Myb基因座编码参与控制多种细胞过程的c-Myb转录因子。最近,研究表明c-Myb可能在硬组织形成中发挥特定作用;然而,所有这些结果均来自对膜内骨化的分析。为了研究c-Myb在软骨内骨化中的可能作用,我们在胚胎发育期间对小鼠四肢的长骨进行了研究。首先,通过原位杂交分析长骨软骨内骨化过程中c-myb的表达模式。在生长板的增殖区和肥大区发现了c-myb阳性区域。在胚胎早期阶段,在软骨膜和指间区域也观察到了局部表达。在增殖的软骨细胞和前肢骨的软骨膜中发现了c-Myb蛋白(胚胎第14.5天至17.5天)。此外,在肥大前和肥大软骨细胞中也检测到了该蛋白。使用功能获得和功能丧失方法来测试c-myb表达改变对从小鼠胚胎前肢芽建立的微团培养物中软骨形成的影响。使用c-myb特异性siRNA的功能丧失方法减少了结节形成,并下调了软骨形成的主要标志物Sox9的表达水平。短暂的c-myb过表达显著增加了软骨结节的形成和细胞外基质的产生,这通过阿尔新蓝强烈染色检测到。此外,在过表达c-myb的细胞中,早期软骨形成基因如Sox9、Col2a1的表达以及Col2-LUC报告基因的活性增加,而晚期软骨形成标志物如Col10a1和Mmp13没有显著变化或下调。综上所述,本研究结果表明c-Myb转录因子参与软骨内骨形成的调节和促进。