Plotkowski Megan L, Kim Sanguk, Phillips Martin L, Partridge Anthony W, Deber Charles M, Bowie James U
Department of Chemistry and Biochemistry, Molecular Biology Institute, and University of California at Los Angeles, USA.
Biochemistry. 2007 Oct 30;46(43):12164-73. doi: 10.1021/bi701066h. Epub 2007 Oct 4.
Myelin protein zero (MPZ) is the major integral membrane protein of peripheral nerve myelin in higher vertebrates, mediating homoadhesion of the multiple, spiraling wraps of the myelin sheath. Previous studies have shown that full-length MPZ can form dimers and tetramers, and biochemical studies on the extracellular domain (ECD) indicate that it can form a tetramer, albeit very weakly. On the basis of cross-linking studies and equilibrium sedimentation of a transmembrane (TM) domain peptide (MPZ-TM), we find that the MPZ-TM can form homodimers. We further characterized the dimer by measuring the effects of alanine and leucine substitutions on the ability of the TM to dimerize in Escherichia coli membranes. Our results indicate that the primary packing interface for the MPZ TM homodimer is a glycine zipper (GxxxGxxxG) motif. We also find that the G134R mutation, which lies within the glycine zipper packing interface and causes Charcot-Marie-Tooth disease type 1B, severely inhibits dimerization, suggesting that dimerization of the TM domain may be important for the normal functioning of MPZ. By combining our new results with prior work, we suggest a new model for an MPZ lattice that may form during the construction of myelin.
髓鞘蛋白零(MPZ)是高等脊椎动物外周神经髓鞘的主要整合膜蛋白,介导髓鞘多层螺旋缠绕的同源黏附。先前的研究表明,全长MPZ可形成二聚体和四聚体,对细胞外结构域(ECD)的生化研究表明它能形成四聚体,尽管非常微弱。基于跨膜(TM)结构域肽(MPZ-TM)的交联研究和平衡沉降,我们发现MPZ-TM能形成同源二聚体。我们通过测量丙氨酸和亮氨酸取代对TM在大肠杆菌膜中形成二聚体能力的影响,进一步对二聚体进行了表征。我们的结果表明,MPZ TM同源二聚体的主要堆积界面是一个甘氨酸拉链(GxxxGxxxG)基序。我们还发现,位于甘氨酸拉链堆积界面内且导致1B型夏科-马里-图斯病的G134R突变严重抑制二聚化,这表明TM结构域的二聚化可能对MPZ的正常功能很重要。通过将我们的新结果与先前的工作相结合,我们提出了一种在髓鞘构建过程中可能形成的MPZ晶格新模型。