Department of Physics, Syracuse University, 201 Physics Building, Syracuse, New York 13244-1130, USA.
J Phys Chem B. 2010 Jul 8;114(26):8750-9. doi: 10.1021/jp101311s.
Among all beta-barrel pores, staphylococcal alpha-hemolysin (alphaHL), a heptameric transmembrane protein of known high-resolution crystal structure, features a high stability in planar lipid bilayers under a wide range of harsh experimental conditions. Here, we employed single-channel electrical recordings and standard protein engineering to explore the impact of two distant charge reversals within the interior of the beta-barrel part of the pore. The charge reversals were replacements of lysines with aspartic acids. A charge reversal within the structurally stiff region of the beta barrel near the pore constriction reduced the open-state current of the pore, but produced a quiet pore, showing current fluctuation-free channel behavior. In contrast, a charge reversal on the trans entrance, within the structurally flexible glycine-rich turn of the beta barrel, increased the open-state current and produced gating activity of the pore in the form of large-amplitude and frequent current fluctuations. Remarkably, cumulative insertion of the two distant charge reversals resulted in a large-amplitude permanent blockade of the beta barrel, as judged by both single-channel and macroscopic current measurements. The results from this work suggest that these distant charge reversals are energetically coupled, producing different impacts on the ionic transport, the unitary conductance and the open-state probability of the pore.
在所有的β桶孔中,葡萄球菌α-溶血素(αHL)是一种七聚体跨膜蛋白,其高分辨率晶体结构已知,在广泛的苛刻实验条件下,在平面脂质双层中具有很高的稳定性。在这里,我们采用单通道电记录和标准蛋白工程技术,研究了β桶孔内部两个远距离电荷反转对孔的影响。电荷反转是将赖氨酸替换为天冬氨酸。β桶孔缩窄处附近结构刚性区域内的电荷反转降低了孔的开放态电流,但产生了安静的孔,表现出无电流波动的通道行为。相比之下,β桶的结构柔性甘氨酸丰富环上的跨入口处的电荷反转增加了开放态电流,并以大振幅和频繁的电流波动的形式产生了孔的门控活性。值得注意的是,两个远距离电荷反转的累积插入导致β桶的大振幅永久性阻塞,这可以通过单通道和宏观电流测量来判断。这项工作的结果表明,这些远距离的电荷反转在能量上是耦合的,对孔的离子传输、单位电导和开放态概率产生不同的影响。