Babajko Sylvie, Petit Stéphane, Fernandes Isabelle, Méary Fleur, LeBihan Johanne, Pibouin Laurence, Berdal Ariane
Centre de Recherche des Cordeliers, INSERM UMRS872 Equipe 5, Biologie Oro-Faciale et Pathologie, Université Denis Diderot, Paris 7, France.
Cells Tissues Organs. 2009;189(1-4):115-21. doi: 10.1159/000151748. Epub 2008 Aug 27.
Msx homeogenes play an important role in epithelial-mesenchymal interactions leading development. Msx1 is relevant for dental and craniofacial morphogenesis, as suggested by phenotypes of Msx1 mutations in human and Msx1 KO mice. During adulthood, Msx1 is still expressed in the skeleton where its role is largely unknown. Our group showed that the Msx1 gene is submitted to bidirectional transcription generating a long noncoding antisense (AS) RNA. During tooth development, Msx1 sense (S) and AS RNAs showed specific patterns of expression. Thus, the aim of the present study was to analyze the relation between Msx1 S and AS RNAs. In vivo mapping in adult mice showed that both Msx1 RNAs were detected in tested tissues such as bone. In vitro, Msx1 AS RNA decreased endogenous Msx1 S expression and modified Msx1 protein cell distribution. Regulations of Dlx5 and Bmp4 expression involving Msx1 S and AS RNAs showed that Msx1 AS RNA could modulate Msx1 function. The study of Msx1 S and AS RNA status is interesting in the case of tooth agenesis and bone loss to see if a disturbance of this balance could be associated with a disturbance of bone homeostasis. In that sense, our current results suggest a clear involvement of Msx1 in alveolar bone.
Msx同源基因在引导发育的上皮-间充质相互作用中发挥重要作用。如人类Msx1突变体和Msx1基因敲除小鼠的表型所示,Msx1与牙齿和颅面形态发生相关。在成年期,Msx1仍在骨骼中表达,但其作用在很大程度上未知。我们的研究小组表明,Msx1基因经历双向转录,产生一种长链非编码反义(AS)RNA。在牙齿发育过程中,Msx1正义(S)RNA和AS RNA表现出特定的表达模式。因此,本研究的目的是分析Msx1 S RNA和AS RNA之间的关系。成年小鼠体内定位显示,在诸如骨骼等测试组织中可检测到两种Msx1 RNA。在体外,Msx1 AS RNA降低了内源性Msx1 S RNA的表达,并改变了Msx1蛋白的细胞分布。涉及Msx1 S RNA和AS RNA的Dlx5和Bmp4表达调控表明,Msx1 AS RNA可调节Msx1的功能。在牙齿发育不全和骨质流失的情况下,研究Msx1 S RNA和AS RNA的状态很有意义,以观察这种平衡的紊乱是否与骨稳态的紊乱有关。从这个意义上说,我们目前的结果表明Msx1明显参与牙槽骨的形成。