Nakajima A, Sugimoto Y, Yoneyama H, Nakae T
Department of Molecular Life Science, Tokai University School of Medicine, Isehara 259-1193, Japan.
J Biol Chem. 2000 Sep 29;275(39):30064-8. doi: 10.1074/jbc.M005742200.
The outer membrane subunit OprM of the multicomponent efflux pump of Pseudomonas aeruginosa has been assumed to form a transmembrane xenobiotic exit channel across the outer membrane. We challenged this hypothesis to clarify the underlying ambiguity by manipulating the amino-terminal signal sequence of the OprM protein of the MexAB-OprM efflux pump in P. aeruginosa. [(3)H]Palmitate uptake experiments revealed that OprM is a lipoprotein. The following lines of evidence unequivocally established that the OprM protein functioned at the periplasmic space. (i) The OprM protein, in which a signal sequence including Cys-18 was replaced with that of periplasmic azurin, appeared in the periplasmic space but not in the outer membrane fraction, and the protein fully functioned as the pump subunit. (ii) The hybrid OprM containing the N-terminal transmembrane segment of the inner membrane protein, MexF, appeared exclusively in the inner membrane fraction. The hybrid protein containing 186 or 331 amino acid residues of MexF was fully active for the antibiotic extrusion, but a 42-residue protein was totally inactive. (iii) The mutant OprM, in which the N-terminal cysteine residue was replaced with another amino acid, appeared unmodified with fatty acid and was fractionated in both the periplasmic space and the inner membrane fraction but not in the outer membrane fraction. The Cys-18-modified OprM functioned for the antibiotic extrusion indistinguishably from that in the wild-type strain. We concluded, based on these results, that the OprM protein was anchored in the outer membrane via fatty acid(s) attached to the N-terminal cysteine residue and that the entire polypeptide moiety was exposed to the periplasmic space.
铜绿假单胞菌多组分外排泵的外膜亚基OprM被认为可形成一个跨外膜的跨膜异生物质出口通道。我们对这一假设提出质疑,通过操纵铜绿假单胞菌MexAB - OprM外排泵的OprM蛋白的氨基末端信号序列来澄清潜在的模糊性。[³H]棕榈酸摄取实验表明OprM是一种脂蛋白。以下一系列证据明确证实OprM蛋白在周质空间发挥作用。(i)将包含Cys - 18的信号序列替换为周质蓝铜蛋白的信号序列后的OprM蛋白出现在周质空间而非外膜组分中,并且该蛋白完全发挥泵亚基的功能。(ii)包含内膜蛋白MexF的N末端跨膜区段的杂交OprM仅出现在内膜组分中。包含186或331个MexF氨基酸残基的杂交蛋白对抗生素外排具有完全活性,但一个42个残基的蛋白完全无活性。(iii)将N末端半胱氨酸残基替换为另一种氨基酸的突变型OprM未被脂肪酸修饰,并且在周质空间和内膜组分中都有分布,但在外膜组分中没有。经Cys - 18修饰的OprM对抗生素外排的功能与野生型菌株中的无异。基于这些结果,我们得出结论,OprM蛋白通过附着在N末端半胱氨酸残基上的脂肪酸锚定在外膜中,并且整个多肽部分暴露于周质空间。