Hirano Minako, Asakura Mami, Ide Toru
Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University, 3-1-1 Tsushima-naka, Kita-ku, Okayama-shi, Okayama, 700-8530, Japan.
Anal Sci. 2025 Apr;41(4):329-334. doi: 10.1007/s44211-024-00707-3. Epub 2024 Dec 20.
The human BK channel (hBK) is an essential membrane protein that regulates various biological functions, and its dysfunction leads to serious diseases. Understanding the biophysical properties of hBK channels is crucial for drug development. Artificial lipid bilayer recording is used to measure biophysical properties at the single-channel level. However, this technique is time-consuming and complicated; thus, its measurement efficiency is very low. Previously, we developed a novel technique to improve the measurement efficiency by rapidly forming lipid bilayer membranes and incorporating ion channels into the membrane using a hydrophilically modified gold probe. To further improve our technique for application to the hBK channel, we combined it using the gold probe with a liposome fusion method. Using a probe on which liposomes containing hBK channels were immobilized, the channels were efficiently incorporated into the lipid bilayer membrane, and the measured channel currents showed the current characteristics of the hBK channel. This technique will be useful for the efficient measurements of the channel properties of hBK and other biologically important channels.
人类BK通道(hBK)是一种调节多种生物学功能的重要膜蛋白,其功能障碍会导致严重疾病。了解hBK通道的生物物理特性对于药物开发至关重要。人工脂质双层记录用于在单通道水平测量生物物理特性。然而,该技术耗时且复杂,因此其测量效率非常低。此前,我们开发了一种新技术,通过使用亲水性修饰的金探针快速形成脂质双层膜并将离子通道整合到膜中来提高测量效率。为了进一步改进我们的技术以应用于hBK通道,我们将其与金探针和脂质体融合方法相结合。使用固定有含hBK通道脂质体的探针,通道被有效地整合到脂质双层膜中,测量的通道电流显示出hBK通道的电流特性。该技术将有助于高效测量hBK和其他生物学上重要通道的通道特性。