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铜绿假单胞菌蛋白质F在脂质双分子层膜中形成的大离子通透孔的特性。

Properties of the large ion-permeable pores formed from protein F of Pseudomonas aeruginosa in lipid bilayer membranes.

作者信息

Benz R, Hancock R E

出版信息

Biochim Biophys Acta. 1981 Aug 20;646(2):298-308. doi: 10.1016/0005-2736(81)90336-9.

Abstract

The incorporation of porin protein F from the outer membrane of Pseudomonas aeruginosa into artificial lipid bilayers results in an increase of the membrane conductance by many orders of magnitude. The membrane conductance is caused by the formation of large ion-permeable channels with a single-channel conductance in the order of 5 nS for 1 M alkali chlorides. The conductance has an ohmic current vs. voltage relationship. Further information on the structure of the pore formed by protein F was obtained by determining the single-channel conductance for various species differing in charge and size, and from zero-current potential measurements. The channel was found to be permeable for large organic ions (Tris+, N(C2H5)4+, Hepes-) and a channel diameter of 2.2 nm could be estimated from the conductance data (pore length of 7.5 nm). At neutral pH the pore is about two times more permeable for cations than for anions, possibly caused by negative charges in the pore. The consistent observation of large water filled pores formed by porin protein F in model membrane systems is discussed in the light of the known low permeability of the Ps. aeruginosa outer membrane towards antibiotics. It is suggested that this results from a relatively low proportion of open functional porin protein F pores in vivo.

摘要

将铜绿假单胞菌外膜中的孔蛋白F整合到人工脂质双层中会使膜电导增加多个数量级。膜电导是由形成大的离子通透通道引起的,对于1 M碱金属氯化物,单通道电导约为5 nS。该电导具有欧姆电流与电压的关系。通过测定不同电荷和大小的各种离子的单通道电导以及零电流电位测量,获得了关于蛋白F形成的孔结构的更多信息。发现该通道对大的有机离子(Tris +、N(C2H5)4 +、Hepes -)具有通透性,并且根据电导数据可以估计通道直径为2.2 nm(孔长度为7.5 nm)。在中性pH下,孔对阳离子的通透性比阴离子高约两倍,这可能是由于孔内的负电荷所致。鉴于已知铜绿假单胞菌外膜对抗生素的低通透性,讨论了在模型膜系统中由孔蛋白F形成的大的充满水的孔的一致观察结果。有人认为,这是由于体内开放的功能性孔蛋白F孔的比例相对较低所致。

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