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首页> 外文期刊>Scientific reports. >Differential PI(4,5)P2 sensitivities of TRPC4, C5 homomeric and TRPC1/4, C1/5 heteromeric channels
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Differential PI(4,5)P2 sensitivities of TRPC4, C5 homomeric and TRPC1/4, C1/5 heteromeric channels

机译:TRPC4,C5同系物和TRPC1 / 4,C1 / 5异聚体通道对PI(4,5)P2的敏感性差异

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Transient receptor potential canonical (TRPC) 4 and TRPC5 channels are modulated by the Gαq-PLC pathway. Since phosphatidylinositol 4,5-bisphosphate (PI(4,5)P2) maintains TRPC4 and TRPC5 channel function, the Gαq-PLC pathway inhibits channel activity by depleting PI(4,5)P2. Here we investigated the difference in PI(4,5)P2 sensitivity between homomeric and heteromeric TRPC channels. First, by using a Danio rerio voltage-sensing phosphatase (DrVSP), we show that PI(4,5)P2 dephosphorylation robustly inhibits TRPC4α, TRPC4β, and TRPC5 homotetramer currents and also TRPC1/4α, TRPC1/4β, and TRPC1/5 heterotetramer currents. Secondly, sensitivity of channels to PI(4,5)P2 dephosphorylation was suggested through the usage of FRET in combination with patch clamping. The sensitivity increased in the sequence TRPC4β??TRPC4α??TRPC5 in homotetramers, whereas when forming heterotetramers with TRPC1, the sensitivity was approximately equal between the channels. Thirdly, we determined putative PI(4,5)P2 binding sites based on a TRPC4 prediction model. By neutralization of basic residues, we identified putative PI(4,5)P2 binding sites because the mutations reduced FRET to a PI(4,5)P2 sensor and reduced the current amplitude. Therefore, one functional TRPC4 has 8 pockets with the two main binding regions; K419, K664/R511, K518, H630. We conclude that TRPC1 channel function as a regulator in setting PI(4,5)P2 affinity for TRPC4 and TRPC5 that changes PI(4,5)P2 sensitivity.
机译:瞬时受体电势规范(TRPC)4和TRPC5通道由Gαq-PLC途径调节。由于磷脂酰肌醇4,5-二磷酸(PI(4,5)P2)维持TRPC4和TRPC5通道功能,Gαq-PLC途径通过消耗PI(4,5)P2抑制通道活性。在这里,我们研究了同质和异质TRPC通道之间PI(4,5)P2敏感性的差异。首先,通过使用Danio rerio电压感应磷酸酶(DrVSP),我们显示PI(4,5)P2脱磷酸作用强烈抑制TRPC4α,TRPC4β和TRPC5同四聚体电流,以及TRPC1 /4α,TRPC1 /4β和TRPC1 / 5异四聚体电流。其次,通过结合使用FRET和膜片钳位,提出了通道对PI(4,5)P2去磷酸化的敏感性。在同四聚体中,灵敏度按序列TRPC4β<βTRPC4α≤βTRPC5的顺序增加,而当与TRPC1形成异四聚体时,通道之间的敏感性大致相等。第三,我们根据TRPC4预测模型确定推定的PI(4,5)P2结合位点。通过中和碱性残基,我们确定了推定的PI(4,5)P2结合位点,因为该突变将FRET减少到PI(4,5)P2传感器并减小了电流幅度。因此,一个功能性的TRPC4具有8个带有两个主要结合区的口袋;一个是TRPC4。 K419,K664 / R511,K518,H630。我们得出的结论是,TRPC1通道在设置PI(4,5)P2对TRPC4和TRPC5的亲和力方面发挥了调节作用,从而改变了PI(4,5)P2的敏感性。

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