Coudert Amélie E, Pibouin Laurence, Vi-Fane Brigitte, Thomas Bethan L, Macdougall Mary, Choudhury Anuradha, Robert Benoît, Sharpe Paul T, Berdal Ariane, Lezot Frédéric
Laboratoire de Biologie Oro-Faciale et Pathologie, INSERM U 0714, Centre de recherches biomédicales des Cordeliers 15-21, rue de l'Ecole de Médecine, 75270 Paris Cedex 6, France.
Nucleic Acids Res. 2005 Sep 12;33(16):5208-18. doi: 10.1093/nar/gki831. Print 2005.
Bidirectional transcription, leading to the expression of an antisense (AS) RNA partially complementary to the protein coding sense (S) RNA, is an emerging subject in mammals and has been associated with various processes such as RNA interference, imprinting and transcription inhibition. Homeobox genes do not escape this bidirectional transcription, raising the possibility that such AS transcription occurs during embryonic development and may be involved in the complexity of regulation of homeobox gene expression. According to the importance of the Msx1 homeobox gene function in craniofacial development, especially in tooth development, the expression and regulation of its recently identified AS transcripts were investigated in vivo in mouse from E9.5 embryo to newborn, and compared with the S transcript and the encoded protein expression pattern and regulation. The spatial and temporal expression patterns of S, AS transcripts and protein are consistent with a role of AS RNA in the regulation of Msx1 expression in timely controlled developmental sites. Epithelial-mesenchymal interactions were shown to control the spatial organization of S and also AS RNA expression during early patterning of incisors and molars in the odontogenic mesenchyme. To conclude, this study clearly identifies the Msx1 AS RNA involvement during tooth development and evidences a new degree of complexity in craniofacial developmental biology: the implication of endogenous AS RNAs.
双向转录导致与蛋白质编码正义(S)RNA部分互补的反义(AS)RNA的表达,这在哺乳动物中是一个新兴的研究领域,并且与RNA干扰、印记和转录抑制等多种过程相关。同源框基因也存在这种双向转录现象,这增加了这样一种可能性,即这种反义转录在胚胎发育过程中发生,并且可能参与同源框基因表达调控的复杂性。鉴于Msx1同源框基因在颅面发育尤其是牙齿发育中的重要功能,我们在体内研究了从E9.5胚胎到新生小鼠中其最近鉴定出的反义转录本的表达和调控,并将其与正义转录本以及编码蛋白的表达模式和调控进行了比较。正义、反义转录本和蛋白的时空表达模式与反义RNA在及时控制发育位点的Msx1表达调控中的作用相一致。上皮-间充质相互作用在牙源性间充质中切牙和磨牙早期模式形成过程中控制了正义和反义RNA表达的空间组织。总之,本研究明确确定了Msx1反义RNA在牙齿发育过程中的参与,并证明了颅面发育生物学中一个新的复杂程度:内源性反义RNA的影响。