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Regulation of canonical transient receptor potential isoform 3 (TRPC3) channel by protein kinase G

机译:蛋白激酶G对经典瞬时受体电位亚型3(TRPC3)通道的调节

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摘要

Canonical transient receptor potential (TRPC) channels are Ca2+-permeable nonselective cation channels that are widely expressed in numerous cell types. Seven different members of TRPC channels have been isolated. The activity of these channels is regulated by the filling state of intracellular Ca2+ stores and/or diacylglycerol and/or Ca2+/calmodulin. However, no evidence is available as to whether TRPC channels are regulated by direct phosphorylation on the channels. In the present study, TRPC isoform 3 (TRPC3) gene was overexpressed in HEK293 cells that were stably transfected with protein kinase G (PKG). We found that the overexpressed TRPC3 mediated store-operated Ca2+ influx and that this type of Ca2+ influx was inhibited by cGMP. The inhibitory effect of cGMP was abolished by KT5823 or H8. Point mutations at two consensus PKG phosphorylation sites (T11A and S263Q) of TRPC3 channel markedly reduced the inhibitory effect of cGMP. In addition, TRPC3 proteins were purified from HEK293 cells that were transfected with either wild-type or mutant TRPC3 constructs, and in vitro PKG phosphorylation assay was carried out. It was found that wild-type TRPC3 could be directly phosphorylated by PKG in vitro and that the phosphorylation was abolished in the presence of KT5823. The phosphorylation signal was greatly reduced in mutant protein T11A or S263Q. Taken together, TRPC3 channels could be directly phosphorylated by PKG at position T11 and S263, and this phosphorylation abolished the store-operated Ca2+ influx mediated by TRPC3 channels in HEK293 cells.
机译:典范的瞬态受体电位(TRPC)通道是Ca 2 + 渗透性非选择性阳离子通道,在多种细胞类型中广泛表达。隔离了TRPC通道的七个不同成员。这些通道的活性受细胞内Ca 2 + 存储和/或二酰基甘油和/或Ca 2 + /钙调蛋白的填充状态的调节。但是,没有证据表明TRPC通道是否受到通道上直接磷酸化的调控。在本研究中,在用蛋白激酶G(PKG)稳定转染的HEK293细胞中过表达了TRPC亚型3(TRPC3)基因。我们发现过表达的TRPC3介导的存储操作的Ca 2 + 流入,并且这种类型的Ca 2 + 流入被cGMP抑制。 KT5823或H8消除了cGMP的抑制作用。 TRPC3通道的两个共有PKG磷酸化位点(T11A和S263Q)的点突变显着降低了cGMP的抑制作用。另外,从用野生型或突变型TRPC3构建体转染的HEK293细胞中纯化TRPC3蛋白,并进行体外PKG磷酸化测定。已经发现野生型TRPC3可以在体外被PKG直接磷酸化,并且在KT5823存在下磷酸化被消除。在突变蛋白T11A或S263Q中磷酸化信号大大降低。两者合计,TRPC3通道可以被PKG在T11和S263处直接磷酸化,这种磷酸化消除了HEK293细胞中由TRPC3通道介导的贮存操纵的Ca 2 + 内流。

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