Ye Wenbin, Lv Qing, Wong Chung-Kwun Amy, Hu Sean, Fu Chao, Hua Zhong, Cai Guoping, Li Guoxi, Yang Burton B, Zhang Yaou
Department of Biological Science and Biotechnology, Tsinghua University, Beijing, People's Republic of China.
PLoS One. 2008 Mar 5;3(3):e1719. doi: 10.1371/journal.pone.0001719.
MicroRNAs (miRNAs) guide posttranscriptional repression of mRNAs. Hundreds of miRNAs have been identified but the target identification of mammalian mRNAs is still a difficult task due to a poor understanding of the interaction between miRNAs and the miRNA recognizing element (MRE). In recent research, the importance of the 5' end of the miRNA:MRE duplex has been emphasized and the effect of the tail region addressed, but the role of the central loop has largely remained unexplored. Here we examined the effect of the loop region in miRNA:MRE duplexes and found that the location of the central loop is one of the important factors affecting the efficiency of gene regulation mediated by miRNAs. It was further determined that the addition of a loop score combining both location and size as a new criterion for predicting MREs and their cognate miRNAs significantly decreased the false positive rates and increased the specificity of MRE prediction.
微小RNA(miRNA)指导mRNA的转录后抑制。数百种miRNA已被鉴定出来,但由于对miRNA与miRNA识别元件(MRE)之间相互作用的了解不足,哺乳动物mRNA的靶标鉴定仍然是一项艰巨的任务。在最近的研究中,miRNA:MRE双链体5'端的重要性已得到强调,并且尾部区域的作用也已得到探讨,但中央环的作用在很大程度上仍未得到研究。在这里,我们研究了miRNA:MRE双链体中环区域的作用,发现中央环的位置是影响miRNA介导的基因调控效率的重要因素之一。进一步确定,添加一个结合位置和大小的环得分作为预测MRE及其同源miRNA的新标准,显著降低了假阳性率,提高了MRE预测 的特异性。