Kim Joomyeong, He Hongzhi, Kim Hana
Department of Biological Sciences, Louisiana State University, Baton Rouge, LA, United States of America.
PLoS One. 2017 Jul 18;12(7):e0181591. doi: 10.1371/journal.pone.0181591. eCollection 2017.
The imprinting of the mouse Peg3 domain is controlled through a 4-kb genomic region encompassing the bidirectional promoter and 1st exons of Peg3 and Usp29. In the current study, this ICR was inverted to test its orientation dependency for the transcriptional and imprinting control of the Peg3 domain. The inversion resulted in the exchange of promoters and 1st exons between Peg3 and Usp29. Paternal transmission of this inversion caused 10-fold down-regulation of Peg3 and 2-fold up-regulation of Usp29 in neonatal heads, consistent with its original promoter strength in each direction. The paternal transmission also resulted in reduced body size among the animals, which was likely contributed by the dramatic down-regulation of Peg3. Transmission through either allele caused no changes in the DNA methylation and imprinting status of the Peg3 domain except that Zfp264 became bi-allelic through the maternal transmission. Overall, the current study suggests that the orientation of the Peg3-ICR may play no role in its allele-specific DNA methylation, but very critical for the transcriptional regulation of the entire imprinted domain.
小鼠Peg3结构域的印记是通过一个4kb的基因组区域来控制的,该区域包含双向启动子以及Peg3和Usp29的第1外显子。在本研究中,这个印记控制区域(ICR)被倒置,以测试其对Peg3结构域转录和印记控制的方向依赖性。倒置导致了Peg3和Usp29之间启动子和第1外显子的交换。这种倒置的父系传递导致新生小鼠头部中Peg3下调10倍,Usp29上调2倍,这与其在每个方向上的原始启动子强度一致。父系传递还导致动物体型减小,这可能是由于Peg3的显著下调所致。通过任何一个等位基因传递,除了通过母系传递Zfp264变为双等位基因外,Peg3结构域的DNA甲基化和印记状态均未发生变化。总体而言,本研究表明,Peg3-ICR的方向可能对其等位基因特异性DNA甲基化没有作用,但对整个印记结构域的转录调控非常关键。