Li X Z, Poole K
Department of Microbiology and Immunology, Queen's University, Kingston, Ontario, Canada K7L 3N6.
J Bacteriol. 2001 Jan;183(1):12-27. doi: 10.1128/JB.183.1.12-27.2001.
OprM is the outer membrane component of the MexA-MexB-OprM efflux system of Pseudomonas aeruginosa. Multiple-sequence alignment of this protein and its homologues identified several regions of high sequence conservation that were targeted for site-directed mutagenesis. Of several deletions which were stably expressed, two, spanning residues G199 to A209 and A278 to N286 of the mature protein, were unable to restore antibiotic resistance in OprM-deficient strains of P. aeruginosa. Still, mutation of several conserved residues within these regions did not adversely affect OprM function. Mutation of the highly conserved N-terminal cysteine residue, site of acylation of this presumed lipoprotein, also did not affect expression or activity of OprM. Similarly, substitution of the OprM lipoprotein signal, including consensus lipoprotein box, with the signal peptide of OprF, the major porin of this organism, failed to impact on expression or activity. Apparently, acylation is not essential for OprM function. A large deletion at the N terminus, from A12 to R98, compromised OprM expression to some extent, although the deletion derivative did retain some activity. Several deletions failed to yield an OprM protein, including one lacking an absolutely conserved LGGGW sequence near the C terminus of the protein. The pattern of permissive and nonpermissive deletions was used to test a topology model for OprM based on the recently published crystal structure of the OprM homologue, TolC (V. Koronakis, A. Sharff, E. Koronakis, B. Luisi, and C. Hughes, Nature 405:914-919, 2000). The data are consistent with OprM monomer existing as a substantially periplasmic protein with four outer membrane-spanning regions.
OprM是铜绿假单胞菌MexA-MexB-OprM外排系统的外膜成分。对该蛋白及其同源物进行的多序列比对确定了几个高度保守的区域,这些区域被作为定点诱变的目标。在几个稳定表达的缺失突变体中,有两个缺失突变体(分别跨越成熟蛋白的G199至A209位残基以及A278至N286位残基)无法恢复铜绿假单胞菌OprM缺陷菌株的抗生素抗性。然而,这些区域内几个保守残基的突变并未对OprM功能产生不利影响。这个假定的脂蛋白酰化位点——高度保守的N端半胱氨酸残基的突变,也未影响OprM的表达或活性。同样,用该菌主要孔蛋白OprF的信号肽替换OprM脂蛋白信号(包括共有脂蛋白框),也未影响其表达或活性。显然,酰化对于OprM功能并非必不可少。N端从A12至R98的大片段缺失在一定程度上损害了OprM的表达,不过该缺失衍生物仍保留了一些活性。有几个缺失突变未能产生OprM蛋白,其中一个缺失了该蛋白C端附近一个绝对保守的LGGGW序列。基于最近发表的OprM同源物TolC的晶体结构(V. Koronakis、A. Sharff、E. Koronakis、B. Luisi和C. Hughes,《自然》405:914 - 919,2000),利用允许和不允许缺失的模式对OprM的拓扑模型进行了测试。数据表明OprM单体作为一种主要位于周质的蛋白存在,具有四个跨外膜区域。