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Dynamic phospholipid interaction of β2e subunit regulates the gating of voltage-gated Ca2+ channels

机译:β2e亚基的动态磷脂相互作用调节电压门控Ca2 +通道的门控

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摘要

High voltage-activated Ca2+ (CaV) channels are protein complexes containing pore-forming α1 and auxiliary β and α2δ subunits. The subcellular localization and membrane interactions of the β subunits play a crucial role in regulating CaV channel inactivation and its lipid sensitivity. Here, we investigated the effects of membrane phosphoinositide (PI) turnover on CaV2.2 channel function. The β2 isoform β2e associates with the membrane through electrostatic and hydrophobic interactions. Using chimeric β subunits and liposome-binding assays, we determined that interaction between the N-terminal 23 amino acids of β2e and anionic phospholipids was sufficient for β2e membrane targeting. Binding of the β2e subunit N terminus to liposomes was significantly increased by inclusion of 1% phosphatidylinositol 4,5-bisphosphate (PIP2) in the liposomes, suggesting that, in addition to phosphatidylserine, PIs are responsible for β2e targeting to the plasma membrane. Membrane binding of the β2e subunit slowed CaV2.2 current inactivation. When membrane phosphatidylinositol 4-phosphate and PIP2 were depleted by rapamycin-induced translocation of pseudojanin to the membrane, however, channel opening was decreased and fast inactivation of CaV2.2(β2e) currents was enhanced. Activation of the M1 muscarinic receptor elicited transient and reversible translocation of β2e subunits from membrane to cytosol, but not that of β2a or β3, resulting in fast inactivation of CaV2.2 channels with β2e. These results suggest that membrane targeting of the β2e subunit, which is mediated by nonspecific electrostatic insertion, is dynamically regulated by receptor stimulation, and that the reversible association of β2e with membrane PIs results in functional changes in CaV channel gating. The phospholipid–protein interaction observed here provides structural insight into mechanisms of membrane–protein association and the role of phospholipids in ion channel regulation.
机译:高压激活的Ca 2 + (CaV)通道是包含孔形成α1以及辅助β和α2δ亚基的蛋白质复合物。 β亚基的亚细胞定位和膜相互作用在调节CaV通道失活及其脂质敏感性中起关键作用。在这里,我们调查了膜磷酸肌醇(PI)营业额对CaV2.2通道功能的影响。 β2同工型β2e通过静电和疏水相互作用与膜结合。使用嵌合的β亚基和脂质体结合测定法,我们确定β2e的N末端23个氨基酸与阴离子磷脂之间的相互作用足以使β2e膜靶向。通过在脂质体中包含1%磷脂酰肌醇4,5-双磷酸酯(PIP2),β2e亚基N末端与脂质体的结合显着增加,这表明,除磷脂酰丝氨酸外,PI还负责将β2e靶向质膜。 β2e亚基的膜结合减缓了CaV2.2电流失活。当雷帕霉素诱导的假janin易位至膜时耗尽膜磷脂酰肌醇4-磷酸和PIP2时,通道开口减少,CaV2.2(β2e)电流的快速失活增强。 M1毒蕈碱受体的激活引起β2e亚基从膜到细胞质的瞬时和可逆转运,但不引起β2a或β3的瞬时转运和可逆转运,导致CaV2.2通道被β2e快速失活。这些结果表明,受体刺激可动态调节由非特异性静电插入介导的β2e亚基的膜靶向作用,并且β2e与膜PI的可逆结合会导致CaV通道门控功能改变。此处观察到的磷脂与蛋白质的相互作用为深入了解膜与蛋白质的结合机理以及磷脂在离子通道调节中的作用提供了结构上的见识。

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