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肾小管FoxP2与肾纤维化

Tubular FoxP2 and Kidney Fibrosis.

作者信息

Zou Yixin, Yiu Wai Han, Lok Sarah W Y, Ma Jingyuan, Feng Yuchen, Lai Kar Neng, Tang Sydney C W

机构信息

Division of Nephrology, Department of Medicine, School of Clinical Medicine, The University of Hong Kong, Queen Mary Hospital, Hong Kong, China.

出版信息

J Am Soc Nephrol. 2025 Apr 1;36(4):544-558. doi: 10.1681/ASN.0000000576. Epub 2024 Dec 10.

Abstract

KEY POINTS

is overexpressed in human and in murine unilateral ureteral obstruction and unilateral ischemia-reperfusion models. overexpression mediates epithelial-to-mesenchymal transition and G2/M cell cycle arrest in kidney tubular cells to promote fibrosis.

BACKGROUND

Kidney fibrosis is the final common pathway of progressive CKD that leads to kidney failure, for which there are limited therapeutic strategies. The transcription factor, Forkhead box P2 (), has been implicated in organ development and tumorigenesis through its association with the epithelial-to-mesenchymal transition (EMT) process. In this study, we uncovered a novel role of in kidney fibrosis.

METHODS

Human kidney biopsies were used to assess expression. Tubule-specific knockout mice were generated through LoxP-Cre transgenic manipulation and applied to murine models of progressive CKD, including unilateral ureteral obstruction (UUO) and unilateral ischemia-reperfusion injury (UIRI). Cultured kidney tubular epithelial cells were used to analyze the underlying cellular mechanisms.

RESULTS

expression was markedly increased in the tubular nuclei of human kidney biopsies of CKD from patients with IgA nephropathy, membranous nephropathy, and diabetic nephropathy. In murine UUO and UIRI models that recapitulate progressive CKD, tubule-specific deletion of attenuated kidney inflammation and tubulointerstitial fibrosis, accompanied by reduction in cell cycle arrest. In mouse tubular epithelial cells, TGF- upregulated expression through Smad3 signaling while knockdown of suppressed TGF--induced EMT and accumulation of extracellular matrix proteins. Mechanistically, overexpression of inhibited tubular cell proliferation with induction of G2/M cell cycle arrest. Using chromatin-immunoprecipitation sequencing, we identified target genes that are enriched in phosphatidylinositol 3-kinase/protein kinase B and TGF- signaling pathways and further revealed that directly regulated the transcriptional activities of collagen-1, E-cadherin, and p21 that are involved in EMT and cell cycle arrest, thereby promoting the profibrotic process.

CONCLUSIONS

Our findings demonstrate a novel role of in promoting kidney fibrosis in murine UUO and UIRI by activating EMT and cell cycle arrest in kidney tubules, contributing to the progression of CKD.

摘要

关键点

在人类以及小鼠单侧输尿管梗阻和单侧缺血再灌注模型中过表达。其过表达介导肾小管上皮细胞向间充质细胞转化以及G2/M期细胞周期阻滞,从而促进纤维化。

背景

肾纤维化是导致肾衰竭的进行性慢性肾脏病的最终共同途径,对此治疗策略有限。转录因子叉头框蛋白P2()通过与上皮-间充质转化(EMT)过程相关联,参与器官发育和肿瘤发生。在本研究中,我们发现了在肾纤维化中的新作用。

方法

使用人类肾活检组织评估表达情况。通过LoxP-Cre转基因操作构建肾小管特异性敲除小鼠,并将其应用于进行性慢性肾脏病的小鼠模型,包括单侧输尿管梗阻(UUO)和单侧缺血再灌注损伤(UIRI)。使用培养的肾小管上皮细胞分析潜在的细胞机制。

结果

在IgA肾病、膜性肾病和糖尿病肾病患者的慢性肾脏病人类肾活检组织的肾小管细胞核中,表达明显增加。在模拟进行性慢性肾脏病的小鼠UUO和UIRI模型中,肾小管特异性缺失可减轻肾脏炎症和肾小管间质纤维化,并伴有细胞周期阻滞的减少。在小鼠肾小管上皮细胞中,转化生长因子-β(TGF-β)通过Smad3信号上调表达,而敲低则抑制TGF-β诱导的EMT和细胞外基质蛋白的积累。机制上,的过表达通过诱导G2/M期细胞周期阻滞抑制肾小管细胞增殖。通过染色质免疫沉淀测序,我们鉴定出在磷脂酰肌醇3-激酶/蛋白激酶B和TGF-β信号通路中富集的靶基因,并进一步揭示直接调节参与EMT和细胞周期阻滞的胶原蛋白-1、E-钙黏蛋白和p21的转录活性,从而促进纤维化过程。

结论

我们的研究结果表明,在小鼠UUO和UIRI中通过激活肾小管中的EMT和细胞周期阻滞促进肾纤维化,这有助于慢性肾脏病的进展。

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