Department of Biochemistry and Molecular Biology, Gordon Center for Integrative Science, University of Chicago, Chicago, IL 60637, USA.
J Mol Biol. 2010 Feb 19;396(2):293-300. doi: 10.1016/j.jmb.2009.11.042. Epub 2009 Nov 20.
The OmpF porin from the Escherichia coli outer membrane folds into a trimer of beta-barrels, each forming a wide aqueous pore allowing the passage of ions and small solutes. A long loop (L3) carrying multiple acidic residues folds into the beta-barrel pore to form a narrow "constriction zone". A strong and highly conserved charge asymmetry is observed at the constriction zone, with multiple basic residues attached to the wall of the beta-barrel (Lys16, Arg42, Arg82 and Arg132) on one side, and multiple acidic residues of L3 (Asp107, Asp113, Glu117, Asp121, Asp126, Asp127) on the other side. Several computational studies have suggested that a strong transverse electric field could exist at the constriction zone as a result of such charge asymmetry, giving rise to separate permeation pathways for cations and anions. To examine this question, OmpF was expressed, purified and crystallized in the P6(3) space group and two different data sets were obtained at 2.6 A and 3.0 A resolution with K(+) and Rb(+), respectively. The Rb(+)-soaked crystals were collected at the rubidium anomalous wavelength of 0.8149 A and cation positions were determined. A PEG molecule was observed in the pore region for both the K(+) and Rb(+)-soaked crystals, where it interacts with loop L3. The results reveal the separate pathways of anions and cations across the constriction zone of the OmpF pore.
大肠杆菌外膜上的 OmpF 孔道蛋白折叠成三聚体β-桶,每个β-桶形成一个宽的水相通道,允许离子和小溶质通过。一个带有多个酸性残基的长环(L3)折叠到β-桶孔道中,形成一个狭窄的“限制区”。在限制区观察到强烈且高度保守的电荷不对称性,多个碱性残基附着在β-桶壁上(一侧的 Lys16、Arg42、Arg82 和 Arg132),而 L3 的多个酸性残基(另一侧的 Asp107、Asp113、Glu117、Asp121、Asp126、Asp127)。几项计算研究表明,由于这种电荷不对称性,限制区可能存在强横向电场,从而为阳离子和阴离子产生单独的渗透途径。为了研究这个问题,我们表达、纯化并在 P6(3)空间群中结晶了 OmpF,并分别在 2.6 A 和 3.0 A 的分辨率下获得了两个不同的数据集,分别用 K(+)和 Rb(+)进行处理。用 Rb(+)浸泡的晶体在铷的异常波长 0.8149 A 处收集,并确定了阳离子的位置。在 K(+)和 Rb(+)浸泡的晶体中,在孔道区域都观察到一个 PEG 分子,它与 L3 环相互作用。结果揭示了 OmpF 孔道限制区中阴离子和阳离子的单独渗透途径。