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在小鼠中过表达野生型或突变型 trpc6 可特异性上调足细胞表达,足以导致肾小球疾病。

Podocyte-specific overexpression of wild type or mutant trpc6 in mice is sufficient to cause glomerular disease.

机构信息

Centro de Estudios Científicos (CECS), Valdivia, Chile.

出版信息

PLoS One. 2010 Sep 20;5(9):e12859. doi: 10.1371/journal.pone.0012859.

DOI:10.1371/journal.pone.0012859
PMID:20877463
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2942896/
Abstract

Mutations in the TRPC6 calcium channel (Transient receptor potential channel 6) gene have been associated with familiar forms of Focal and Segmental Glomerulosclerosis (FSGS) affecting children and adults. In addition, acquired glomerular diseases are associated with increased expression levels of TRPC6. However, the exact role of TRPC6 in the pathogenesis of FSGS remains to be elucidated. In this work we describe the generation and phenotypic characterization of three different transgenic mouse lines with podocyte-specific overexpression of the wild type or any of two mutant forms of Trpc6 (P111Q and E896K) previously related to FSGS. Consistent with the human phenotype a non-nephrotic range of albuminuria was detectable in almost all transgenic lines. The histological analysis demonstrated that the transgenic mice developed a kidney disease similar to human FSGS. Differences of 2-3 folds in the presence of glomerular lesions were found between the non transgenic and transgenic mice expressing Trpc6 in its wild type or mutant forms specifically in podocytes. Electron microscopy of glomerulus from transgenic mice showed extensive podocyte foot process effacement. We conclude that overexpression of Trpc6 (wild type or mutated) in podocytes is sufficient to cause a kidney disease consistent with FSGS. Our results contribute to reinforce the central role of podocytes in the etiology of FSGS. These mice constitute an important new model in which to study future therapies and outcomes of this complex disease.

摘要

TRPC6 钙通道(瞬时受体电位通道 6)基因突变与影响儿童和成人的局灶性和节段性肾小球硬化症(FSGS)的家族形式有关。此外,获得性肾小球疾病与 TRPC6 表达水平的升高有关。然而,TRPC6 在 FSGS 发病机制中的确切作用仍有待阐明。在这项工作中,我们描述了三种不同的转基因小鼠系的产生和表型特征,这些小鼠系的足细胞特异性过表达野生型或先前与 FSGS 相关的两种突变形式的 Trpc6(P111Q 和 E896K)。与人类表型一致,几乎所有转基因系都可检测到非肾病范围的白蛋白尿。组织学分析表明,转基因小鼠发生了类似于人类 FSGS 的肾脏疾病。在非转基因和表达 Trpc6 的转基因小鼠之间(野生型或突变体形式),肾小球病变的存在存在 2-3 倍的差异,而在足细胞中特异性表达。转基因小鼠肾小球的电子显微镜显示广泛的足细胞足突融合。我们得出结论,足细胞中 TRPC6(野生型或突变型)的过表达足以引起与 FSGS 一致的肾脏疾病。我们的结果有助于加强足细胞在 FSGS 病因学中的核心作用。这些小鼠构成了一个重要的新模型,可以在其中研究这种复杂疾病的未来治疗方法和结果。

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本文引用的文献

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Mutations in the formin gene INF2 cause focal segmental glomerulosclerosis.formin 基因中的突变会导致局灶节段性肾小球硬化症。
Nat Genet. 2010 Jan;42(1):72-6. doi: 10.1038/ng.505. Epub 2009 Dec 20.
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A novel TRPC6 mutation that causes childhood FSGS.一个导致儿童局灶节段性肾小球硬化症的新型 TRPC6 突变。
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TRPC6 mutational analysis in a large cohort of patients with focal segmental glomerulosclerosis.大量局灶节段性肾小球硬化患者队列中的瞬时受体电位阳离子通道亚家族6(TRPC6)突变分析
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Podocyte-targeted therapies - progress and future directions.足细胞靶向治疗 - 进展与未来方向。
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CD36-mediated podocyte lipotoxicity promotes foot process effacement.CD36介导的足细胞脂毒性促进足突消失。
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Current understanding of the molecular mechanisms of circulating permeability factor in focal segmental glomerulosclerosis.目前对局灶节段性肾小球硬化症中循环通透因子的分子机制的认识。
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Deconvolution of Focal Segmental Glomerulosclerosis Pathophysiology Using Transcriptomics Techniques.运用转录组学技术对局灶节段性肾小球硬化病理生理学进行反卷积分析。
Glomerular Dis. 2021 Jul 14;1(4):265-276. doi: 10.1159/000518404. eCollection 2021 Oct.
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TRPC6 mutations associated with focal segmental glomerulosclerosis cause constitutive activation of NFAT-dependent transcription.与局灶节段性肾小球硬化相关的TRPC6突变导致NFAT依赖转录的组成性激活。
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