Singh Dev K, Rosenhouse-Dantsker Avia, Nichols Colin G, Enkvetchakul Decha, Levitan Irena
Department of Medicine, University of Illinois, Chicago, Illinois 60612, USA.
J Biol Chem. 2009 Oct 30;284(44):30727-36. doi: 10.1074/jbc.M109.011221. Epub 2009 Sep 9.
Our earlier studies have shown that channel activity of Kir2 subfamily of inward rectifiers is strongly suppressed by the elevation of cellular cholesterol. The goal of this study is to determine whether cholesterol suppresses Kir channels directly. To achieve this goal, purified prokaryotic Kir (KirBac1.1) channels were incorporated into liposomes of defined lipid composition, and channel activity was assayed by (86)Rb(+) uptake. Our results show that (86)Rb(+) flux through KirBac1.1 is strongly inhibited by cholesterol. Incorporation of 5% (mass cholesterol/phospholipid) cholesterol into the liposome suppresses (86)Rb(+) flux by >50%, and activity is completely inhibited at 12-15%. However, epicholesterol, a stereoisomer of cholesterol with similar physical properties, has significantly less effect on KirBac-mediated (86)Rb(+) uptake than cholesterol. Furthermore, analysis of multiple sterols suggests that cholesterol-induced inhibition of KirBac1.1 channels is mediated by specific interactions rather than by changes in the physical properties of the lipid bilayer. In contrast to the inhibition of KirBac1.1 activity, cholesterol had no effect on the activity of reconstituted KscA channels (at up to 250 microg/mg of phospholipid). Taken together, these observations demonstrate that cholesterol suppresses Kir channels in a pure protein-lipid environment and suggest that the interaction is direct and specific.
我们早期的研究表明,内向整流器Kir2亚家族的通道活性会因细胞胆固醇升高而受到强烈抑制。本研究的目的是确定胆固醇是否直接抑制Kir通道。为实现这一目标,将纯化的原核Kir(KirBac1.1)通道整合到具有特定脂质组成的脂质体中,并通过(86)Rb(+)摄取来测定通道活性。我们的结果表明,通过KirBac1.1的(86)Rb(+)通量受到胆固醇的强烈抑制。在脂质体中加入5%(质量比胆固醇/磷脂)的胆固醇会使(86)Rb(+)通量抑制超过50%,而在12% - 15%时活性完全被抑制。然而,表胆固醇是胆固醇的一种立体异构体,具有相似的物理性质,但其对KirBac介导的(86)Rb(+)摄取的影响明显小于胆固醇。此外,对多种甾醇的分析表明,胆固醇对KirBac1.1通道的抑制是由特定相互作用介导的,而不是由脂质双层物理性质的变化介导的。与对KirBac1.1活性的抑制相反,胆固醇对重组KscA通道的活性没有影响(高达250微克/毫克磷脂)。综上所述,这些观察结果表明胆固醇在纯蛋白 - 脂质环境中抑制Kir通道,并表明这种相互作用是直接且特异的。