School of Engineering and Science, Jacobs University Bremen, Campus Ring 1, 28759 Bremen, Germany.
Biochemistry. 2013 Aug 20;52(33):5522-32. doi: 10.1021/bi400522b. Epub 2013 Aug 9.
The outer membrane porin OprP of Pseudomonas aeruginosa forms a highly specific phosphate selective channel. This channel is responsible for the high-affinity uptake of phosphate ions into the periplasmic space of the bacteria. A detailed investigation of the structure-function relationship of OprP is inevitable to decipher the anion and phosphate selectivity of this porin in particular and to broaden the present understanding of the ion selectivity of different channels. To this end we investigated the role of the central arginine of OprP, R133, in terms of its effects in selectivity and ion transport properties of the pore. Electrophysiological bilayer measurements and free-energy molecular dynamics simulations were carried out to probe the transport of different ions through various R133 mutants. For these mutants, the change in phosphate binding specificity, ion conduction, and anion selectivity was determined and compared to previous molecular dynamic calculations and electrophysiological measurements with wild-type OprP. Molecular analysis revealed a rather particular role of arginine 133 and its charge, while at the same time this residue together with the network of other residues, namely, D94 and Y114, has the ability to dehydrate the permeating ion. These very specific features govern the ion selectivity of OprP.
铜绿假单胞菌外膜孔蛋白 OprP 形成了一个具有高度特异性的磷酸盐选择通道。这个通道负责将磷酸盐离子高亲和力地摄取到细菌的周质空间中。为了解释该孔蛋白对阴离子和磷酸盐的选择性,深入研究 OprP 的结构-功能关系是必不可少的,这也有助于拓宽我们对不同通道离子选择性的现有理解。为此,我们研究了 OprP 中心精氨酸 R133 在选择性和孔道离子传输特性方面的作用。我们进行了电生理双层测量和自由能分子动力学模拟,以研究不同离子通过各种 R133 突变体的传输情况。对于这些突变体,我们确定并比较了磷酸盐结合特异性、离子传导和阴离子选择性的变化,与野生型 OprP 的先前分子动力学计算和电生理测量结果进行了比较。分子分析揭示了精氨酸 133 及其电荷的特殊作用,同时,这个残基与其他残基 D94 和 Y114 一起,具有使渗透离子去水合的能力。这些非常特殊的特征决定了 OprP 的离子选择性。