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靶向 SK4 K 通道钙调蛋白-PIP2 界面的变构抑制剂用于治疗心房颤动。

Allosteric inhibitors targeting the calmodulin-PIP2 interface of SK4 K channels for atrial fibrillation treatment.

机构信息

Department of Physiology & Pharmacology, Tel Aviv University, Tel Aviv 69978, Israel.

Cardiac Arrhythmia Research Laboratory, Department of Physiology and Cell Biology, Faculty of Health Sciences, Regenerative Medicine & Stem Cell Research Center, Ben-Gurion University of the Negev, Beer-Sheva, 8410501, Israel.

出版信息

Proc Natl Acad Sci U S A. 2022 Aug 23;119(34):e2202926119. doi: 10.1073/pnas.2202926119. Epub 2022 Aug 15.

Abstract

The Ca-activated SK4 K channel is gated by Ca-calmodulin (CaM) and is expressed in immune cells, brain, and heart. A cryoelectron microscopy (cryo-EM) structure of the human SK4 K channel recently revealed four CaM molecules per channel tetramer, where the apo CaM C-lobe and the holo CaM -lobe interact with the proximal carboxyl terminus and the linker S4-S5, respectively, to gate the channel. Here, we show that phosphatidylinositol 4-5 bisphosphate (PIP2) potently activates SK4 channels by docking to the boundary of the CaM-binding domain. An allosteric blocker, BA6b9, was designed to act to the CaM-PIP2-binding domain, a previously untargeted region of SK4 channels, at the interface of the proximal carboxyl terminus and the linker S4-S5. Site-directed mutagenesis, molecular docking, and patch-clamp electrophysiology indicate that BA6b9 inhibits SK4 channels by interacting with two specific residues, Arg191 and His192 in the linker S4-S5, not conserved in SK1-SK3 subunits, thereby conferring selectivity and preventing the Ca-CaM -lobe from properly interacting with the channel linker region. Immunohistochemistry of the SK4 channel protein in rat hearts showed a widespread expression in the sarcolemma of atrial myocytes, with a sarcomeric striated Z-band pattern, and a weaker occurrence in the ventricle but a marked incidence at the intercalated discs. BA6b9 significantly prolonged atrial and atrioventricular effective refractory periods in rat isolated hearts and reduced atrial fibrillation induction ex vivo. Our work suggests that inhibition of SK4 K channels by targeting drugs to the CaM-PIP2-binding domain provides a promising anti-arrhythmic therapy.

摘要

钙激活的 SK4 K 通道由钙调蛋白(CaM)门控,在免疫细胞、大脑和心脏中表达。最近,人类 SK4 K 通道的低温电子显微镜(cryo-EM)结构揭示了每个通道四聚体中有四个 CaM 分子,其中apo CaM C lobe 和 holo CaM - lobe 分别与近端羧基末端和连接 S4-S5 相互作用,以门控通道。在这里,我们表明磷脂酰肌醇 4,5 二磷酸(PIP2)通过与 CaM 结合域的边界对接来有力地激活 SK4 通道。一种变构抑制剂 BA6b9 被设计作用于 SK4 通道以前未靶向的区域,即 CaM-PIP2 结合域,位于近端羧基末端和连接 S4-S5 之间的界面上。定点突变、分子对接和膜片钳电生理学表明,BA6b9 通过与连接 S4-S5 中的两个特定残基 Arg191 和 His192 相互作用来抑制 SK4 通道,这些残基在 SK1-SK3 亚基中不保守,从而赋予选择性并防止 Ca-CaM - lobe 与通道连接区正确相互作用。大鼠心脏中 SK4 通道蛋白的免疫组织化学显示,在心房肌细胞的肌膜中广泛表达,具有肌节条纹 Z 带模式,在心室中表达较弱,但在闰盘处表达明显。BA6b9 显著延长了大鼠离体心脏的心房和房室有效不应期,并减少了体外心房颤动的诱导。我们的工作表明,通过将药物靶向到 CaM-PIP2 结合域来抑制 SK4 K 通道为抗心律失常治疗提供了一种有前途的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8adb/9407317/7d7bdb2cddbc/pnas.2202926119fig01.jpg

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