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Phosphorylation of the Cav3.2 T-type calcium channel directly regulates its gating properties

机译:Cav3.2 T型钙通道的磷酸化直接调节其门控性能

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摘要

Phosphorylation is a major mechanism regulating the activity of ion channels that remains poorly understood with respect to T-type calcium channels (Cav3). These channels are low voltage-activated calcium channels that play a key role in cellular excitability and various physiological functions. Their dysfunction has been linked to several neurological disorders, including absence epilepsy and neuropathic pain. Recent studies have revealed that T-type channels are modulated by a variety of serine/threonine protein kinase pathways, which indicates the need for a systematic analysis of T-type channel phosphorylation. Here, we immunopurified Cav3.2 channels from rat brain, and we used high-resolution MS to construct the first, to our knowledge, in vivo phosphorylation map of a voltage-gated calcium channel in a mammalian brain. We identified as many as 34 phosphorylation sites, and we show that the vast majority of these sites are also phosphorylated on the human Cav3.2 expressed in HEK293T cells. In patch-clamp studies, treatment of the channel with alkaline phosphatase as well as analysis of dephosphomimetic mutants revealed that phosphorylation regulates important functional properties of Cav3.2 channels, including voltage-dependent activation and inactivation and kinetics. We also identified that the phosphorylation of a locus situated in the loop I-II S442/S445/T446 is crucial for this regulation. Our data show that Cav3.2 channels are highly phosphorylated in the mammalian brain and establish phosphorylation as an important mechanism involved in the dynamic regulation of Cav3.2 channel gating properties.
机译:磷酸化是调节离子通道活性的主要机制,对于T型钙通道(Cav3)仍然知之甚少。这些通道是低电压激活的钙通道,在细胞兴奋性和各种生理功能中起关键作用。它们的功能障碍与几种神经系统疾病有关,包括失神癫痫和神经性疼痛。最近的研究表明,T型通道受多种丝氨酸/苏氨酸蛋白激酶途径的调节,这表明需要对T型通道磷酸化进行系统分析。在这里,我们从大鼠大脑中免疫纯化了Cav3.2通道,并且我们使用高分辨率质谱技术构建了我们所知的第一个哺乳动物大脑中电压门控钙通道的体内磷酸化图。我们确定了多达34个磷酸化位点,并且我们显示这些位点中的绝大多数也被HEK293T细胞中表达的人类Cav3.2磷酸化。在膜片钳研究中,用碱性磷酸酶处理通道以及对脱磷模拟物突变体的分析显示,磷酸化调节Cav3.2通道的重要功能特性,包括电压依赖性激活,失活和动力学。我们还确定了位于环I-II S442 / S445 / T446的基因座的磷酸化对于该调节至关重要。我们的数据表明,Cav3.2通道在哺乳动物的大脑中高度磷酸化,并将磷酸化确立为参与Cav3.2通道门控特性动态调节的重要机制。

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