Steplewski A, Krynska B, Tretiakova A, Haas S, Khalili K, Amini S
Department of Neurology, Allegheny University of the Health Sciences, Philadelphia, Pennsylvania 19102, USA.
Biochem Biophys Res Commun. 1998 Feb 4;243(1):295-301. doi: 10.1006/bbrc.1997.7821.
Myelin basic protein (MBP) gene contains the upstream regulatory sequence that confers cell type- and stage-specific transcription to MBP expression in oligodendrocytes during brain development. The MB1 regulatory motif located between -14 to -50 with respect to transcription start site binds to a brain derived nuclear protein and plays an important role in transcriptional activation of the MBP promoter in transfection assay. Here, we report the isolation of a recombinant cDNA clone, termed myelin expression factor-3, (MyEF-3) from a mouse brain expression library that encodes a novel protein which interacts with the MBP MB1 domain. Computer assisted evaluations of the MyEF-3 sequence revealed several interesting features including four sites for phosphorylation by casein kinase II, a transmembrane domain at the N-terminus, a nuclear localization signal and a Zinc finger domain at the carboxyl terminal. Results from Western and band shift assays indicate that MyEF-3 binds efficiently to double-stranded MB1 as well as the single-stranded non-coding strand of MB1. The use of short DNA fragments encompassing the nucleotide base substitutions across the MB1 domain in competition band shift assay revealed that the ten nucleotide sequence, 5'-GCCTGTCTTT-3' is important for binding of MyEF-3 to DNA. Results from Northern blot studies demonstrate that expression of MyEF-3 is restricted to brain and developmentally regulated during brain maturation. The biological importance of MyEF-3 in the cell type- and stage-specific expression of MBP during brain development is discussed.
髓鞘碱性蛋白(MBP)基因含有上游调控序列,该序列在脑发育过程中赋予少突胶质细胞中MBP表达细胞类型和阶段特异性转录。相对于转录起始位点位于-14至-50之间的MB1调控基序与一种脑源性核蛋白结合,并在转染实验中对MBP启动子的转录激活中发挥重要作用。在此,我们报告从鼠脑表达文库中分离出一个重组cDNA克隆,称为髓鞘表达因子-3(MyEF-3),它编码一种与MBP的MB1结构域相互作用的新型蛋白质。对MyEF-3序列的计算机辅助评估揭示了几个有趣的特征,包括酪蛋白激酶II磷酸化的四个位点、N端的一个跨膜结构域、一个核定位信号以及C端的一个锌指结构域。蛋白质免疫印迹法和凝胶迁移实验结果表明,MyEF-3能有效地与双链MB1以及MB1的单链非编码链结合。在竞争凝胶迁移实验中使用包含MB1结构域核苷酸碱基替换的短DNA片段表明,十核苷酸序列5'-GCCTGTCTTT-3'对于MyEF-3与DNA的结合很重要。Northern印迹研究结果表明,MyEF-3的表达仅限于脑,并且在脑成熟过程中受到发育调控。本文讨论了MyEF-3在脑发育过程中MBP的细胞类型和阶段特异性表达中的生物学重要性。