Kim Dongkyeong, Choi Jin-Ok, Fan Chuandong, Shearer Randall S, Sharif Mohamed, Busch Patrick, Park Yungki
Hunter James Kelly Research Institute, Department of Biochemistry, Jacobs School of Medicine and Biomedical Sciences, University at Buffalo, Buffalo, NY 14203, USA.
Nucleic Acids Res. 2017 May 19;45(9):5112-5125. doi: 10.1093/nar/gkx080.
Myrf is a key transcription factor for oligodendrocyte differentiation and central nervous system myelination. We and others have previously shown that Myrf is generated as a membrane protein in the endoplasmic reticulum (ER), and that it undergoes auto-processing to release its N-terminal fragment from the ER, which enters the nucleus to work as a transcription factor. These previous studies allow a glimpse into the unusual complexity behind the biogenesis and function of the transcription factor domain of Myrf. Here, we report that Myrf N-terminal fragments assemble into stable homo-trimers before ER release. Consequently, Myrf N-terminal fragments are released from the ER only as homo-trimers. Our re-analysis of a previous genetic screening result in Caenorhabditis elegans shows that homo-trimerization is essential for the biological functions of Myrf N-terminal fragment, and that the region adjacent to the DNA-binding domain is pivotal to its homo-trimerization. Further, our computational analysis uncovered a novel homo-trimeric DNA motif that mediates the homo-trimeric DNA binding of Myrf N-terminal fragments. Importantly, we found that homo-trimerization defines the DNA binding specificity of Myrf N-terminal fragments. In sum, our study elucidates the molecular mechanism governing the biogenesis and function of Myrf N-terminal fragments and its physiological significance.
Myrf是少突胶质细胞分化和中枢神经系统髓鞘形成的关键转录因子。我们和其他人之前已经表明,Myrf在内质网(ER)中作为膜蛋白产生,并且它会进行自我加工以从ER中释放其N端片段,该片段进入细胞核作为转录因子发挥作用。这些先前的研究让我们得以一窥Myrf转录因子结构域生物发生和功能背后不同寻常的复杂性。在这里,我们报告Myrf N端片段在从ER释放之前组装成稳定的同源三聚体。因此,Myrf N端片段仅作为同源三聚体从ER中释放。我们对先前秀丽隐杆线虫基因筛选结果的重新分析表明,同源三聚化对于Myrf N端片段的生物学功能至关重要,并且与DNA结合结构域相邻的区域对其同源三聚化至关重要。此外,我们的计算分析发现了一种新的同源三聚体DNA基序,它介导Myrf N端片段的同源三聚体DNA结合。重要的是,我们发现同源三聚化定义了Myrf N端片段的DNA结合特异性。总之,我们的研究阐明了控制Myrf N端片段生物发生和功能的分子机制及其生理意义。