首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >Diffusion of beta-lactam antibiotics through liposome membranes reconstituted from purified porins of the outer membrane of Pseudomonas aeruginosa.
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Diffusion of beta-lactam antibiotics through liposome membranes reconstituted from purified porins of the outer membrane of Pseudomonas aeruginosa.

机译:β-内酰胺类抗生素通过铜绿假单胞菌外膜纯化孔蛋白重构的脂质体膜扩散。

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摘要

Determination of the rates of diffusion of beta-lactam antibiotics through purified Pseudomonas aeruginosa porins C, D2, and E in liposomes yielded the following results. (i) The rates of carbapenem (imipenem and meropenem) diffusion through the protein D2 pore were roughly 2 to 70 times higher than those through other porin pores. It is not clear why the protein D2 pore allowed rapid diffusion of carbapenems. The rates of diffusion of glucosamine and triglycine through the protein D2 pore were about 14 and 4 times higher, respectively, than that of an uncharged test solute with a similar Mr, glucose. (ii) The rates of diffusion of antipseudomonal anionic beta-lactams such as piperacillin, ceftazidime, cefsulodin, and aztreonam through the protein C pore were higher than those through other porin pores. This was probably due to the slightly larger pore size and the slight anion selectivity of protein C, since the apparent exclusion limit of the protein C pore for uncharged saccharides is higher than that of other porins and the rate of diffusion of gluconic acid through the protein C pore is about double that for glucose. (iii) The rates of diffusion of cefoperazone through all three species of porin were relatively high. These results indicate that the antipseudomonal beta-lactams permeate the P. aeruginosa outer membrane via newly identified porins.
机译:通过纯化的铜绿假单胞菌孔蛋白C,D2和E在脂质体中确定β-内酰胺抗生素的扩散速率,得出以下结果。 (i)碳青霉烯(亚胺培南和美罗培南)在D2蛋白孔中的扩散速率比在其他孔蛋白孔中的扩散速率高约2至70倍。尚不清楚为什么蛋白质D2孔可以使碳青霉烯迅速扩散。葡萄糖胺和三甘氨酸通过蛋白质D2孔的扩散速率分别比不充电的溶质与葡萄糖先生相似的扩散速率分别高14倍和4倍。 (ii)诸如蛋白质的哌拉西林,头孢他啶,头孢磺啶和氨曲南的抗伪伪阴离子β-内酰胺通过蛋白C孔的扩散速率高于通过其他孔蛋白孔的扩散速率。这可能是由于蛋白C的孔径稍大和阴离子选择性稍弱,因为蛋白C孔对不带电荷的糖的表观排斥极限高于其他孔蛋白,并且葡萄糖酸通过蛋白的扩散速率C孔大约是葡萄糖的两倍。 (iii)头孢哌酮在所有三种孔蛋白中的扩散速率都较高。这些结果表明抗假性β-内酰胺通过新鉴定的孔蛋白渗透到铜绿假单胞菌的外膜中。

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