Lebedev V S, Deĭnega E Iu, Kuzovnikova T A, Fedorov Iu I
Institute of Energy Problems of Chemical Physics, Russian Academy of Sciences, Moscow, Russia.
Biofizika. 1999 May-Jun;44(3):483-7.
Cu(2+)-induced permeability of cytoplasmic membranes of Escherichia coli for different cations and neutral molecules of saccharose was estimated by studying their effect on cell plasmolysis during uncharged exchange of cytoplasmic K+ ions by periplasmic space cations. The addition of copper resulted in the exchange of K+ ions by periplasmic Na+, Tris+, streptomycin2+, Cu2+, Ca2+, Mg2+, Cd2+, and Mn2+. It is concluded that Cu(2+)-induced conducting pathways in bacterial membranes are hydrophilic channels with a radius of approximately 0.5 nm and a nonselective permeability for different cations.
通过研究在周质空间阳离子与细胞质K⁺离子进行不带电交换过程中,不同阳离子和蔗糖中性分子对细胞质壁分离的影响,估算了Cu(2+)诱导的大肠杆菌细胞质膜对这些物质的通透性。添加铜会导致细胞质中的K⁺离子与周质中的Na⁺、Tris⁺、链霉素2⁺、Cu2⁺、Ca2⁺、Mg2⁺、Cd2⁺和Mn2⁺发生交换。得出的结论是,细菌膜中Cu(2+)诱导的传导途径是半径约为0.5 nm的亲水性通道,对不同阳离子具有非选择性通透性。