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Phospholipase C-gamma1 is required for the activation of store-operated Ca(2+) channels in liver cells

机译:磷脂酶C-γ1是激活肝细胞中存储操作的Ca(2+)通道所必需的

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摘要

Repetitive hormone-induced changes in concentration of free cytoplasmic Ca2+ in hepatocytes require Ca2+ entry through receptor-activated Ca2+ channels and SOCs (store-operated Ca2+ channels). SOCs are activated by a decrease in Ca2+ concentration in the intracellular Ca2+ stores, but the molecular components and mechanisms are not well understood. Some studies with other cell types suggest that PLC-gamma (phospholipase C-gamma) is involved in the activation of receptor-activated Ca2+ channels and/or SOCs, independently of PLC-gamma-mediated generation of IP3 (inositol 1,4,5-trisphosphate). The nature of the Ca2+ channels regulated by PLC-gamma has not been defined clearly. The aim of the present study was to determine if PLC-gamma is required for the activation of SOCs in liver cells. Transfection of H4IIE cells derived from rat hepatocytes with siRNA (short interfering RNA) targeted to PLC-gamma1 caused a reduction (by approx. 70%) in the PLC-gamma1 protein expression, with maximal effect at 72-96 h. This was associated with a decrease (by approx. 60%) in the amplitude of the I(SOC) (store-operated Ca2+ current) developed in response to intracellular perfusion with either IP(3) or thapsigargin. Knockdown of STIM1 (stromal interaction molecule type 1) by siRNA also resulted in a significant reduction (approx. 80% at 72 h post-transfection) of the I(SOC) amplitude. Immunoprecipitation of PLC-gamma1 and STIM1, however, suggested that under the experimental conditions these proteins do not interact with each other. It is concluded that the PLC-gamma1 protein, independently of IP3 generation and STIM1, is required to couple endoplasmic reticulum Ca2+ release to the activation of SOCs in the plasma membrane of H4IIE liver cells.
机译:重复激素诱导的肝细胞中游离细胞质Ca2 +浓度变化要求Ca2 +通过受体激活的Ca2 +通道和SOC(存储操作的Ca2 +通道)进入。 SOC通过细胞内Ca2 +储存区中Ca2 +浓度的降低而被激活,但是分子的组成和机理尚不十分清楚。对其他细胞类型的一些研究表明,PLC-γ(磷脂酶C-γ)与受体激活的Ca2 +通道和/或SOC的激活有关,而与PLC-γ介导的IP3生成无关(肌醇1,4,5 -三磷酸酯)。由PLC伽马调节的Ca2 +通道的性质尚未明确定义。本研究的目的是确定是否需要PLC-γ激活肝细胞中SOC。用靶向PLC-gamma1的siRNA(短干扰RNA)转染源自大鼠肝细胞的H4IIE细胞,导致PLC-gamma1蛋白表达降低(约70%),在72-96 h时发挥最大作用。这与响应IP(3)或毒胡萝卜素的细胞内灌注而产生的I(SOC)(存储操作的Ca2 +电流)幅度降低(约60%)有关。 siRNA敲低STIM1(基质相互作用分子1型)也导致I(SOC)振幅显着降低(转染后72 h约80%)。然而,PLC-gamma1和STIM1的免疫沉淀表明,在实验条件下,这些蛋白质不会互相作用。结论是,需要独立于IP3生成和STIM1的PLC-gamma1蛋白,以将内质网Ca2 +释放与H4IIE肝细胞质膜中SOC的激活耦合。

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