Rouhani S, Cartailler J P, Facciotti M T, Walian P, Needleman R, Lanyi J K, Glaeser R M, Luecke H
Life Sciences Division, Donner Laboratory, Lawrence Berkeley National Laboratory, University of California, Berkeley, CA 94720, USA.
J Mol Biol. 2001 Oct 26;313(3):615-28. doi: 10.1006/jmbi.2001.5066.
Crystal structures are reported for the D85S and D85S/F219L mutants of the light-driven proton/hydroxyl-pump bacteriorhodopsin. These mutants crystallize in the orthorhombic C222(1) spacegroup, and provide the first demonstration that monoolein-based cubic lipid phase crystallization can support the growth of well-diffracting crystals in non-hexagonal spacegroups. Both structures exhibit similar and substantial differences relative to wild-type bacteriorhodopsin, suggesting that they represent inherent features resulting from neutralization of the Schiff base counterion Asp85. We argue that these structures provide a model for the last photocycle intermediate (O) of bacteriorhodopsin, in which Asp85 is protonated, the proton release group is deprotonated, and the retinal has reisomerized to all-trans. Unlike for the M and N photointermediates, where structural changes occur mainly on the cytoplasmic side, here the large-scale changes are confined to the extracellular side. As in the M intermediate, the side-chain of Arg82 is in a downward configuration, and in addition, a pi-cloud hydrogen bond forms between Trp189 NE1 and Trp138. On the cytoplasmic side, there is increased hydration near the surface, suggesting how Asp96 might communicate with the bulk during the rise of the O intermediate.
报道了光驱动质子/羟基泵细菌视紫红质的D85S和D85S/F219L突变体的晶体结构。这些突变体在正交C222(1)空间群中结晶,首次证明基于单油酸的立方脂质相结晶可以支持非六方空间群中具有良好衍射能力的晶体生长。相对于野生型细菌视紫红质,这两种结构都表现出相似但又显著的差异,表明它们代表了席夫碱抗衡离子天冬氨酸85中和所产生的固有特征。我们认为这些结构为细菌视紫红质的最后光循环中间体(O)提供了一个模型,其中天冬氨酸85被质子化,质子释放基团去质子化,视黄醛重新异构化为全反式。与M和N光中间体不同,M和N光中间体的结构变化主要发生在细胞质一侧,而在这里,大规模变化局限于细胞外侧。与M中间体一样,精氨酸82的侧链呈向下构型,此外,色氨酸189的NE1与色氨酸138之间形成了π-云氢键。在细胞质一侧,表面附近的水合作用增强,这表明了在O中间体上升过程中天冬氨酸96可能如何与主体进行通讯。