Srinivas M, Hopperstad M G, Spray D C
Department of Neuroscience, Albert Einstein College of Medicine, Bronx, NY 10461, USA.
Proc Natl Acad Sci U S A. 2001 Sep 11;98(19):10942-7. doi: 10.1073/pnas.191206198. Epub 2001 Sep 4.
We demonstrate that the antimalarial drug quinine specifically reduces currents through gap junctions formed by some connexins (Cx) in transfected mammalian cells, but does not affect other gap junction types. Quinine blocked Cx36 and Cx50 junctional currents in a reversible and concentration-dependent manner with half maximal blocking concentrations of 32 and 73 microM, respectively; Hill coefficients for block by quinine were about 2 for both connexins. In contrast, quinine did not substantially block gap junction channels formed by Cx26, Cx32, Cx40, and Cx43, and only moderately affected Cx45 junctions. To determine the location of the binding site of quinine (pKa = 8.7), we investigated the effect of quinine at various external and internal pH values and the effect of a permanently charged quaternary derivative of quinine. Our results indicate that the binding site for quinine is intracellular, possibly within the pore. Single-channel studies indicated that exposure to quinine induced slow transitions between open and fully closed states that decreased open probability of the channel. Quinine thus offers a potentially useful method to block certain types of gap junction channels, including those between neurons that are formed by Cx36. Moreover, quinine derivatives that are excluded from other types of membrane channels may provide molecules with connexin-specific as well as connexin-selective blocking activity.
我们证明,抗疟药物奎宁可特异性降低转染哺乳动物细胞中某些连接蛋白(Cx)形成的缝隙连接电流,但不影响其他类型的缝隙连接。奎宁以可逆且浓度依赖性方式阻断Cx36和Cx50连接电流,其半数最大阻断浓度分别为32和73微摩尔;两种连接蛋白被奎宁阻断的希尔系数均约为2。相比之下,奎宁对Cx26、Cx32、Cx40和Cx43形成的缝隙连接通道无明显阻断作用,仅对Cx45连接有中度影响。为确定奎宁(pKa = 8.7)结合位点的位置,我们研究了不同胞外和胞内pH值下奎宁的作用以及奎宁一种带永久电荷的季铵衍生物的作用。我们的结果表明,奎宁的结合位点在细胞内,可能在孔道内。单通道研究表明,暴露于奎宁会诱导通道在开放和完全关闭状态之间缓慢转换,降低通道的开放概率。因此,奎宁提供了一种潜在有用的方法来阻断某些类型的缝隙连接通道,包括由Cx36形成的神经元之间的通道。此外,被其他类型膜通道排除的奎宁衍生物可能会提供具有连接蛋白特异性以及连接蛋白选择性阻断活性的分子。