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Gq信号传导通过激活TRPC6导致肾小球损伤。

Gq signaling causes glomerular injury by activating TRPC6.

作者信息

Wang Liming, Jirka Grant, Rosenberg Paul B, Buckley Anne F, Gomez Jose A, Fields Timothy A, Winn Michelle P, Spurney Robert F

出版信息

J Clin Invest. 2015 May;125(5):1913-26. doi: 10.1172/JCI76767. Epub 2015 Apr 6.

DOI:10.1172/JCI76767
PMID:25844902
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4463190/
Abstract

Familial forms of focal segmental glomerulosclerosis (FSGS) have been linked to gain-of-function mutations in the gene encoding the transient receptor potential channel C6 (TRPC6). GPCRs coupled to Gq signaling activate TRPC6, suggesting that Gq-dependent TRPC6 activation underlies glomerular diseases. Here, we developed a murine model in which a constitutively active Gq α subunit (Gq(Q209L), referred to herein as GqQ>L) is specifically expressed in podocytes and examined the effects of this mutation in response to puromycin aminonucleoside (PAN) nephrosis. We found that compared with control animals, animals expressing GqQ>L exhibited robust albuminuria, structural features of FSGS, and reduced numbers of glomerular podocytes. Gq activation stimulated calcineurin (CN) activity, resulting in CN-dependent upregulation of TRPC6 in murine kidneys. Deletion of TRPC6 in GqQ>L-expressing mice prevented FSGS development and inhibited both tubular damage and podocyte loss induced by PAN nephrosis. Similarly, administration of the CN inhibitor FK506 reduced proteinuria and tubular injury but had more modest effects on glomerular pathology and podocyte numbers in animals with constitutive Gq activation. Moreover, these Gq-dependent effects on podocyte injury were generalizable to diabetic kidney disease, as expression of GqQ>L promoted albuminuria, mesangial expansion, and increased glomerular basement membrane width in diabetic mice. Together, these results suggest that targeting Gq/TRPC6 signaling may have therapeutic benefits for the treatment of glomerular diseases.

摘要

局灶节段性肾小球硬化症(FSGS)的家族性形式与编码瞬时受体电位通道C6(TRPC6)的基因中的功能获得性突变有关。与Gq信号通路偶联的G蛋白偶联受体(GPCR)激活TRPC6,这表明Gq依赖性TRPC6激活是肾小球疾病的基础。在此,我们构建了一种小鼠模型,其中组成型活性Gqα亚基(Gq(Q209L),本文中称为GqQ>L)在足细胞中特异性表达,并研究了该突变对嘌呤霉素氨基核苷(PAN)肾病反应的影响。我们发现,与对照动物相比,表达GqQ>L的动物表现出强烈的蛋白尿、FSGS的结构特征以及肾小球足细胞数量减少。Gq激活刺激钙调神经磷酸酶(CN)活性,导致小鼠肾脏中TRPC6依赖CN上调。在表达GqQ>L的小鼠中删除TRPC6可预防FSGS的发展,并抑制PAN肾病诱导的肾小管损伤和足细胞丢失。同样,给予CN抑制剂FK506可减少蛋白尿和肾小管损伤,但对组成型Gq激活动物的肾小球病理和足细胞数量的影响较小。此外,这些Gq对足细胞损伤的依赖性作用可推广到糖尿病肾病,因为GqQ>L的表达促进了糖尿病小鼠的蛋白尿、系膜扩张和肾小球基底膜宽度增加。总之,这些结果表明,靶向Gq/TRPC6信号通路可能对肾小球疾病的治疗具有治疗益处。

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本文引用的文献

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Phosphodiesterase 5 inhibition ameliorates angiontensin II-induced podocyte dysmotility via the protein kinase G-mediated downregulation of TRPC6 activity.磷酸二酯酶 5 抑制通过蛋白激酶 G 介导的 TRPC6 活性下调改善血管紧张素 II 诱导的足细胞运动障碍。
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A mutation in TRPC6 channels abolishes their activation by hypoosmotic stretch but does not affect activation by diacylglycerol or G protein signaling cascades.TRPC6 通道中的突变可消除其对低渗拉伸的激活作用,但不影响其对二酰基甘油或 G 蛋白信号级联的激活作用。
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Inhibition of the TRPC5 ion channel protects the kidney filter.抑制 TRPC5 离子通道可保护肾脏滤器。
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