Penel S, Pebay-Peyroula E, Rosenbusch J, Rummel G, Schirmer T, Timmins P A
Institut Laue-Langevin, Grenoble, France.
Biochimie. 1998 May-Jun;80(5-6):543-51. doi: 10.1016/s0300-9084(00)80019-x.
The structure of the detergent, ocytyl hydroxyethylsufoxide (C8(HE)SO), bound to the OmpF porin from E coli (in the trigonal crystal form) has been determined by neutron crystallography. Due to a dynamic exchange of detergent molecules with their environment they are not ordered on an atomic scale. The structure reported here is therefore at a resolution of approximately 16 A. The X-ray crystallographically determined structure of the protein provides a starting point for the neutron analysis in which the detergent is visualized primarily thanks to its high contrast against D2O. The structure shows the detergent to be located mainly in two areas. It forms toroidal annuli around each OmpF trimer, these annuli fusing to form a detergent belt surrounding a solvent filled column traversing the crystal. Those areas of the protein to which the detergent binds are formed almost exclusively of hydrophobic residues and form a band about 30 A high around the trimer. Its upper and lower bounds are defined by two bands of aromatic residues, tyrosines pointing away from the detergent belt and interacting with the polar headgroups while phenylalanines point inwards. This strongly suggests that the same areas define, in vivo, the location at which protein interacts with lipid. The hydrophobic moiety of detergent is also found mediating the hydrophobic protein-protein interactions at the interface between two trimers on the crystallographic two-fold axis.
已通过中子晶体学确定了与来自大肠杆菌的OmpF孔蛋白(呈三角晶体形式)结合的去污剂辛基羟乙基亚砜(C8(HE)SO)的结构。由于去污剂分子与其环境之间存在动态交换,它们在原子尺度上无序排列。因此,此处报道的结构分辨率约为16埃。通过X射线晶体学确定的蛋白质结构为中子分析提供了一个起点,在中子分析中,主要由于去污剂与重水的高对比度而使其可视化。该结构表明去污剂主要位于两个区域。它在每个OmpF三聚体周围形成环形环,这些环融合形成围绕穿过晶体的充满溶剂的柱的去污剂带。去污剂结合的蛋白质区域几乎完全由疏水残基组成,并在三聚体周围形成一条约30埃高的带。其上下边界由两条芳香族残基带定义,酪氨酸指向远离去污剂带并与极性头部基团相互作用,而苯丙氨酸指向内部。这强烈表明,在体内,相同的区域定义了蛋白质与脂质相互作用的位置。还发现去污剂的疏水部分在晶体学二重轴上两个三聚体之间的界面处介导疏水蛋白质-蛋白质相互作用。