Schneider Elizabeth H, Dopico Alex M, Bukiya Anna N
Department of Pharmacology, Addiction Science, and Toxicology, College of Medicine, University of Tennessee Health Science Center, Memphis, TN 38103, USA.
Int J Mol Sci. 2025 Apr 17;26(8):3814. doi: 10.3390/ijms26083814.
Calcium- and voltage-gated potassium channels of large conductance (BK channels) in smooth muscle (SM) act as part of a negative feedback mechanism on SM contraction and associated decrease in cerebral artery diameter. Functional BK channels result from tetrameric association of α subunits encoded by (). Ionic current from slo1 channels is inhibited by cholesterol in artificial lipid bilayers, an effect significantly reduced by the slo1 Y450F substitution. Whether such substitution affects cholesterol action on cerebral artery SM BK channel function and diameter remains unknown. Using the knock-in (K/I) mouse, we determined the effect of cholesterol enrichment on BK currents in native SM cells from middle cerebral artery using patch-clamp electrophysiology and the artery diameter ex vivo response to cholesterol. Results show that the K/I mutation modifies both basal function and the channel's response to cholesterol enrichment. Such modifications are detectable solely in SM cells from males, demonstrating sexual dimorphism. Unexpectedly, the modifications introduced by the Y450F substitution do not translate into observable changes in middle cerebral artery diameter ex vivo, suggesting that mechanisms at the SM level compensate for changes driven by the point mutation under study.
平滑肌(SM)中的大电导钙激活和电压门控钾通道(BK通道)作为SM收缩及脑动脉直径相关减小的负反馈机制的一部分发挥作用。功能性BK通道由()编码的α亚基四聚体结合产生。在人工脂质双分子层中,slo1通道的离子电流受到胆固醇的抑制,slo1 Y450F替代可显著降低这种效应。这种替代是否影响胆固醇对脑动脉SM BK通道功能和直径的作用仍不清楚。利用敲入(K/I)小鼠,我们使用膜片钳电生理学方法确定了胆固醇富集对大脑中动脉天然SM细胞中BK电流的影响,以及离体动脉直径对胆固醇的反应。结果表明,K/I突变改变了基础功能以及通道对胆固醇富集的反应。这种改变仅在雄性的SM细胞中可检测到,表明存在性别二态性。出乎意料的是,Y450F替代引入的改变并未转化为离体大脑中动脉直径的可观察到的变化,这表明SM水平的机制补偿了所研究的点突变驱动的变化。