Jevnaker Anne-Marthe, Osmundsen Harald
Department of Oral Biology, University of Oslo, Oslo, Norway.
Arch Oral Biol. 2008 Jul;53(7):629-45. doi: 10.1016/j.archoralbio.2008.01.014. Epub 2008 Mar 17.
Using microarrays, miRNA expression profiles have been established at selected times during development (E15.5, P0 and P5) of the murine first molar mandibular tooth germ and the right submandibular salivary gland (E15.5, P0, P5 and P25). Microarray data was validated using real-time PCR, also facilitating RT-PCR profiling of nine selected miRNAs. In general, good agreement between microarray data and real-time PCR data was found. Further, miRNA expression profiles of foetal and adult liver were also investigated, and found to agree with published data. In tooth germ and salivary gland up to 88 different miRNAs were detected. In all tissues examined miRNA expression was highly dynamic; miRNA profiles changing extensively with time of development. Additionally, the expression of some miRNAs was tissue-specific. Bioinformatic analysis of clusters of miRNAs was attempted using the miRGate software, the results suggesting miRNAs to be involved in the regulation of essential developmental processes, e.g., epithelical cell proliferation, mesodermal cell fate determination and salivary gland morphogenesis.
利用微阵列技术,已确定了小鼠下颌第一磨牙牙胚和右下颌下唾液腺发育过程中特定时间点(胚胎第15.5天、出生后第0天和第5天)的miRNA表达谱。微阵列数据通过实时PCR进行验证,这也有助于对9种选定的miRNA进行RT-PCR分析。总体而言,微阵列数据与实时PCR数据之间具有良好的一致性。此外,还研究了胎儿和成人肝脏的miRNA表达谱,发现与已发表的数据相符。在牙胚和唾液腺中检测到多达88种不同的miRNA。在所检查的所有组织中,miRNA表达具有高度动态性;miRNA谱随发育时间发生广泛变化。此外,一些miRNA的表达具有组织特异性。尝试使用miRGate软件对miRNA簇进行生物信息学分析,结果表明miRNA参与了基本发育过程的调控,例如上皮细胞增殖、中胚层细胞命运决定和唾液腺形态发生。