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TRPC6 channel activation promotes neonatal glomerular mesangial cell apoptosis via calcineurin/NFAT and FasL/Fas signaling pathways

机译:TRPC6通道激活通过钙调神经磷酸酶/ NFAT和FasL / Fas信号通路促进新生肾小球系膜细胞凋亡

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摘要

Glomerular mesangial cell (GMC) proliferation and death are involved in the pathogenesis of glomerular disorders. The mechanisms that control GMC survival are poorly understood, but may include signal transduction pathways that are modulated by changes in intracellular Ca2+ ([Ca2+]i) concentration. In this study, we investigated whether activation of the canonical transient receptor potential (TRPC) 6 channels and successive [Ca2+]i elevation alter neonatal GMC survival. Hyperforin (HF)-induced TRPC6 channel activation increased [Ca2+]i concentration, inhibited proliferation, and triggered apoptotic cell death in primary neonatal pig GMCs. HF-induced neonatal GMC apoptosis was not associated with oxidative stress. However, HF-induced TRPC6 channel activation stimulated nuclear translocation of the nuclear factor of activated T-cells, cytoplasmic 1 (NFATc1). HF also increased cell death surface receptor Fas ligand (FasL) level and caspase-8 activity in the cells; effects mitigated by [Ca2+]i chelator BAPTA, calcineurin/NFAT inhibitor VIVIT, and TRPC6 channel knockdown. Accordingly, HF-induced neonatal GMC apoptosis was attenuated by BAPTA, VIVIT, Fas blocking antibody, and a caspase-3/7 inhibitor. These findings suggest that TRPC6 channel-dependent [Ca2+]i elevation and the ensuing induction of the calcineurin/NFAT, FasL/Fas, and caspase signaling cascades promote neonatal pig GMC apoptosis.
机译:肾小球系膜细胞(GMC)增殖和死亡参与肾小球疾病的发病机理。控制GMC生存的机制了解甚少,但可能包括信号转导途径,该信号转导途径受到细胞内Ca 2 + ([Ca 2 + ] i)浓度变化的调节。在这项研究中,我们研究了规范的瞬时受体电位(TRPC)6通道的激活和连续的[Ca 2 + ] i升高是否会改变新生儿GMC的存活率。 Hyperforin(HF)诱导的TRPC6通道激活增加了[Ca 2 + ] i的浓度,抑制了增殖,并引发了新生猪GMC中凋亡的细胞死亡。 HF诱导的新生儿GMC凋亡与氧化应激无关。但是,HF诱导的TRPC6通道激活刺激了激活的T细胞细胞质1(NFATc1)的核因子的核易位。 HF还增加了细胞死亡表面受体FasL(FasL)水平和细胞中的caspase-8活性。 [Ca 2 + ] i螯合剂BAPTA,钙调神经磷酸酶/ NFAT抑制剂VIVIT和TRPC6通道敲低可减轻作用。因此,BAPTA,VIVIT,Fas阻断抗体和caspase-3 / 7抑制剂减弱了HF诱导的新生儿GMC凋亡。这些发现表明,TRPC6通道依赖性的[Ca 2 + ] i升高以及随之而来的钙调神经磷酸酶/ NFAT,FasL / Fas和caspase信号传导级联的诱导可促进新生猪GMC凋亡。

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