Cellular and Structural Physiology Institute, Nagoya University, Nagoya 464-8601, Japan.
Nat Commun. 2013;4:1766. doi: 10.1038/ncomms2731.
Euglenoid flagellates have striped surface structures comprising pellicles, which allow the cell shape to vary from rigid to flexible during the characteristic movement of the flagellates. In Euglena gracilis, the pellicular strip membranes are covered with paracrystalline arrays of a major integral membrane protein, IP39, a putative four-membrane-spanning protein with the conserved sequence motif of the PMP-22/EMP/MP20/Claudin superfamily. Here we report the three-dimensional structure of Euglena IP39 determined by electron crystallography. Two-dimensional crystals of IP39 appear to form a striated pattern of antiparallel double-rows in which trimeric IP39 units are longitudinally polymerised, resulting in continuously extending zigzag-shaped lines. Structural analysis revealed an asymmetric molecular arrangement in the trimer, and suggested that at least four different interactions between neighbouring protomers are involved. A combination of such multiple interactions would be important for linear strand formation of membrane proteins in a lipid bilayer.
眼虫型鞭毛虫具有条纹状的表面结构,由质膜组成,这些质膜在鞭毛虫的特征运动过程中使细胞形状能够从刚性变为柔性。在绿眼虫中,质膜条带膜上覆盖着主要的整合膜蛋白 IP39 的准晶数组,这是一种具有 PMP-22/EMP/MP20/Claudin 超家族保守序列模体的假定的四跨膜蛋白。在这里,我们通过电子晶体学报告了绿眼虫 IP39 的三维结构。IP39 的二维晶体似乎形成了平行双排的条纹图案,其中三聚体 IP39 单元沿纵向聚合,形成连续延伸的之字形线。结构分析揭示了三聚体中不对称的分子排列,并表明至少涉及四个相邻原聚体之间的不同相互作用。这种多种相互作用的组合对于脂质双层中膜蛋白的线性链形成很重要。