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脂质基质对反硝化副球菌无脂多糖孔蛋白掺入及功能的影响。

Influence of the lipid matrix on incorporation and function of LPS-free porin from Paracoccus denitrificans.

作者信息

Wiese A, Schröder G, Brandenburg K, Hirsch A, Welte W, Seydel U

机构信息

Forschungsinstitut Borstel, Division of Biophysics, Germany.

出版信息

Biochim Biophys Acta. 1994 Mar 23;1190(2):231-42. doi: 10.1016/0005-2736(94)90079-5.

Abstract

We have studied the role of lipopolysaccharide (LPS) for the insertion of LPS-free porin from Paracoccus denitrificans into planar lipid bilayers and its function therein. For this, we reconstituted the porin into different asymmetric planar lipid bilayers with or without LPS and into symmetric phospholipid bilayers. LPS-free porin added to the various bilayer systems was found to induce a step-wise increase in membrane conductance with different incorporation rates, depending on the presence of LPS in the bilayer leaflet opposite to porin addition. The incorporation rate into asymmetric LPS/phospholipid membranes from the phospholipid side was more than 10-fold higher than that observed for pure phospholipid membranes. The porin formed general diffusion pores without any salt specificity. The mean single-channel conductance did not depend on the presence of LPS and was about 4.2 nS for a subphase containing 1 M KCl in all systems tested. At certain applied transmembrane voltages, which depended on membrane composition and were approximately greater than 100 mV for the LPS/phospholipid system, single-channel closing in three steps was observed. Differences in the voltage dependence of porin-channel closing could be correlated with the surface charge of the bilayer. From the voltage-dependent gating behaviour proof for an oriented incorporation of the porin molecules, depending on the side of porin addition, and evidence for their orientation could be derived. Measurements at temperatures above and below the beta<==>alpha phase transition temperature of LPS gave evidence for the influence of membrane rigidity on the gating behaviour.

摘要

我们研究了脂多糖(LPS)在将反硝化副球菌的无LPS孔蛋白插入平面脂质双层及其在其中的功能方面所起的作用。为此,我们将孔蛋白重构到含有或不含有LPS的不同不对称平面脂质双层以及对称磷脂双层中。发现在各种双层系统中添加无LPS孔蛋白会导致膜电导逐步增加,其掺入率不同,这取决于在与添加孔蛋白相对的双层小叶中是否存在LPS。从磷脂侧掺入不对称LPS/磷脂膜的速率比在纯磷脂膜中观察到的速率高10倍以上。孔蛋白形成了无任何盐特异性的一般扩散孔。在所有测试系统中,对于含有1 M KCl的亚相,平均单通道电导不依赖于LPS的存在,约为4.2 nS。在某些特定的施加跨膜电压下(这取决于膜组成,对于LPS/磷脂系统约大于100 mV),观察到单通道分三步关闭。孔蛋白通道关闭的电压依赖性差异可能与双层的表面电荷相关。从电压依赖性门控行为可以证明孔蛋白分子根据添加孔蛋白的一侧进行定向掺入,并可以得出其取向证据。在高于和低于LPS的β<==>α相变温度的温度下进行的测量提供了膜刚性对门控行为影响的证据。

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