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Mechanism of adrenergic Ca_v1.2 stimulation revealed by proximity proteomics

机译:邻近蛋白质组学揭示肾上腺素Ca_v1.2刺激的机制

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Increased cardiac contractility during the fight-or-flight response is caused by beta-adrenergic augmentation of Ca(V)1.2 voltage-gated calcium channels(1-4). However, this augmentation persists in transgenic murine hearts expressing mutant Ca(V)1.2 alpha(1C) and beta subunits that can no longer be phosphorylated by protein kinase A-an essential downstream mediator of beta-adrenergic signalling-suggesting that non-channel factors are also required. Here we identify the mechanism by which beta-adrenergic agonists stimulate voltage-gated calcium channels. We express alpha(1C) or beta(2B) subunits conjugated to ascorbate peroxidase(5) in mouse hearts, and use multiplexed quantitative proteomics(6,7) to track hundreds of proteins in the proximity of Ca(V)1.2. We observe that the calcium-channel inhibitor Rad(8,9), a monomeric G protein, is enriched in the Ca(V)1.2 microenvironment but is depleted during beta-adrenergic stimulation. Phosphorylation by protein kinase A of specific serine residues on Rad decreases its affinity for beta subunits and relieves constitutive inhibition of Ca(V)1.2, observed as an increase in channel open probability. Expression of Rad or its homologue Rem in HEK293T cells also imparts stimulation of Ca(V)1.3 and Ca(V)2.2 by protein kinase A, revealing an evolutionarily conserved mechanism that confers adrenergic modulation upon voltage-gated calcium channels.
机译:战斗或逃跑反应期间心脏收缩力的增加是由Ca(V)1.2电压门控钙通道(1-4)的β-肾上腺素能增加引起的。但是,这种增强在表达突变Ca(V)1.2 alpha(1C)和β亚基的转基因鼠心中仍然存在,后者不再能被蛋白激酶A磷酸化-β肾上腺素能信号传导的重要下游介质,这暗示着非通道因子也需要。在这里,我们确定β-肾上腺素能激动剂刺激电压门控钙通道的机制。我们在小鼠心脏中表达与抗坏血酸过氧化物酶(5)共轭的alpha(1C)或beta(2B)亚基,并使用多重定量蛋白质组学(6,7)来跟踪Ca(V)1.2附近的数百种蛋白质。我们观察到钙通道抑制剂Rad(8,9),一种单体G蛋白,在Ca(V)1.2微环境中富集,但在β-肾上腺素刺激过程中被耗尽。 Rad上特定丝氨酸残基的蛋白激酶A进行的磷酸化作用降低了其对β亚基的亲和力,并减轻了Ca(V)1.2的组成型抑制,这被视为通道打开概率的增加。 Rad或其同源物Rem在HEK293T细胞中的表达还通过蛋白激酶A刺激Ca(V)1.3和Ca(V)2.2,从而揭示了进化保守的机制,可在电压门控钙通道上赋予肾上腺素调节。

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