Department of Pharmacology and Toxicology, University of Vienna, Althanstrasse, Vienna, Austria.
Br J Pharmacol. 2011 Mar;162(5):1074-82. doi: 10.1111/j.1476-5381.2010.01091.x.
Diltiazem inhibits Ca(V)1.2 channels and is widely used in clinical practice to treat cardiovascular diseases. Binding determinants for diltiazem are located on segments IIIS6, IVS6 and the selectivity filter of the pore forming α₁ subunit of Ca(V)1.2. The aim of the present study was to clarify the location of the diltiazem binding site making use of its membrane-impermeable quaternary derivative d-cis-diltiazem (qDil) and mutant α₁ subunits.
Ca(V)1.2 composed of α1, α2-δ and β2a subunits were expressed in tsA-201 cells and barium currents through Ca(V)1.2 channels were recorded using the patch clamp method in the whole cell configuration. qDil was synthesized and applied to the intracellular side (via the patch pipette) or to the extracellular side of the membrane (by bath perfusion).
Quaternary derivative d-cis-diltiazem inhibited Ca(V)1.2 when applied to the intracellular side of the membrane in a use-dependent manner (59 ± 4% at 300 µM) and induced only a low level of tonic (non-use-dependent) block (16 ± 2% at 300 µM) when applied to the extracellular side of the membrane. Mutations in IIIS6 and IVS6 that have previously been shown to reduce the sensitivity of Ca(V)1.2 to tertiary diltiazem also had reduced sensitivity to intracellularly applied qDil.
The data show that use-dependent block of in Ca(V)1.2 by diltiazem occurs by interaction with a binding site accessible via a hydrophilic route from the intracellular side of the membrane.
地尔硫䓬抑制 Ca(V)1.2 通道,广泛用于临床心血管疾病的治疗。地尔硫䓬的结合决定因素位于 IIIS6、IVS6 片段和 Ca(V)1.2 孔形成 α₁亚基的选择性过滤器。本研究旨在利用其非膜通透性的季铵衍生物 d-cis-地尔硫䓬(qDil)和突变体 α₁亚基阐明地尔硫䓬结合位点的位置。
Ca(V)1.2 由 α1、α2-δ 和 β2a 亚基组成,在 tsA-201 细胞中表达,通过膜片钳全细胞记录方法记录 Ca(V)1.2 通道的钡电流。qDil 被合成并应用于细胞内侧面(通过膜片钳管内)或膜外侧面(通过浴灌注)。
季铵衍生物 d-cis-地尔硫䓬以使用依赖性方式抑制 Ca(V)1.2(在 300 µM 时为 59 ± 4%),当应用于膜外侧面时仅诱导低水平的紧张(非使用依赖性)阻断(在 300 µM 时为 16 ± 2%)。先前已显示降低 Ca(V)1.2 对三嗪地尔硫䓬敏感性的 IIIS6 和 IVS6 突变也降低了对细胞内应用 qDil 的敏感性。
数据表明,地尔硫䓬对 Ca(V)1.2 的使用依赖性阻断是通过与通过亲水途径从膜内侧面可及的结合位点相互作用而发生的。