Department of Animal Morphology and Physiology, Federal Rural University of Pernambuco, Recife, Pernambuco, Brazil.
Department of Biophysics and Radiobiology, Federal University of Pernambuco, Recife, Pernambuco, Brazil.
Eur Biophys J. 2023 Nov;52(8):661-671. doi: 10.1007/s00249-023-01675-8. Epub 2023 Aug 5.
The kinetics of an ion channel are classically understood as a random process. However, studies have shown that in complex ion channels, formed by multiple subunits, this process can be deterministic, presenting long-term memory. Staphylococcus aureus α-hemolysin (α-HL) is a toxin that acts as the major factor in Staphylococcus aureus virulence. α-HL is a water-soluble protein capable of forming ion channels into lipid bilayers, by insertion of an amphipathic β-barrel. Here, the α-HL was used as an experimental model to study memory in ion channel kinetics. We applied the approximate entropy (ApEn) approach to analyze randomness and the Detrended Fluctuation Analysis (DFA) to investigate the existence of long memory in α-HL channel kinetics. Single-channel currents were measured through experiments with α-HL channels incorporated in planar lipid bilayers. All experiments were carried out under the following conditions: 1 M NaCl solution, pH 4.5; transmembrane potential of + 40 mV and temperature 25 ± 1 °C. Single-channel currents were recorded in real-time in the memory of a microcomputer coupled to an A/D converter and a patch-clamp amplifier. The conductance value of the α-HL channels was 0.82 ± 0.0025 nS (n = 128). The DFA analysis showed that the kinetics of α-HL channels presents long-term memory ([Formula: see text] = 0.63 ± 0.04). The ApEn outcomes showed low complexity to dwell times when open (ApEn = 0.5514 ± 0.28) and closed (ApEn = 0.1145 ± 0.08), corroborating the results of the DFA method.
离子通道的动力学经典上被理解为一种随机过程。然而,研究表明,在由多个亚基组成的复杂离子通道中,这个过程可以是确定性的,表现出长期记忆。金黄色葡萄球菌α-溶血素(α-HL)是一种毒素,是金黄色葡萄球菌毒力的主要因素。α-HL 是一种水溶性蛋白质,能够通过插入一个两亲性β桶,在脂质双层中形成离子通道。在这里,α-HL 被用作研究离子通道动力学中记忆的实验模型。我们应用近似熵(ApEn)方法来分析随机性,并用去趋势波动分析(DFA)来研究 α-HL 通道动力学中是否存在长记忆。通过在平面脂质双层中掺入α-HL 通道的实验来测量单通道电流。所有实验均在以下条件下进行:1 M NaCl 溶液,pH 4.5;跨膜电势为+40 mV,温度为 25±1°C。实时记录单通道电流在与 A/D 转换器和膜片钳放大器耦合的微机的记忆中。α-HL 通道的电导值为 0.82±0.0025 nS(n=128)。DFA 分析表明,α-HL 通道的动力学呈现出长期记忆([Formula: see text] = 0.63±0.04)。ApEn 结果表明,开放时(ApEn=0.5514±0.28)和关闭时(ApEn=0.1145±0.08)的停留时间复杂度较低,这与 DFA 方法的结果相符。