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PHF14: an innate inhibitor against the progression of renal fibrosis following folic acid-induced kidney injury

机译:pHF14:叶酸诱导肾损伤后肾纤维化进展的先天抑制剂

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PHF14 is a newly identified regulator of mesenchyme growth in embryonic tissues. Previous studies have shown that phf14-null mutants die just after birth due to interstitial tissue hyperplasia in major organs, including the kidneys. The aim of this study was to investigate PHF14 function in renal fibrosis. By studying the chronic kidney injury mouse model, we found that PHF14 was upregulated in fibrotic kidneys after renal insults induced by folic acid administration. Compared with wild-type mice, PHF14-null mice showed more severe renal fibrosis after pro-fibrotic stimuli. Moreover, PHF14 in rat renal fibroblasts was upregulated by transforming growth factor-β (TGF-β) stimulation; while this upregulation was inhibited when smad3 phosphorylation was blocked. A chromatin immunoprecipitation (ChIP) assay further indicated that phospho-smad3 (p-smad3) acted as a transcription factor to enhance PHF14 expression. A lack of PHF14 expression enhanced collagen I and α-smooth muscle actin (α-SMA) synthesis induced by TGF-β in vitro . PHF14 was involved in inhibition of platelet-derived growth factor (PDGF) signaling overactivation by selectively repressing PDGF receptor-α (PDGFR-α) transcription. In summary, PHF14 expression was upregulated in fibrotic models in vivo and in vitro , and the TGF-β/smad3/PHF14 pathway acted as a self-limiting mechanism in the TGF-β-dominated renal pro-fibrotic process by suppressing PDGFR-α expression.
机译:PHF14是胚胎组织中的新发现的间充质细胞生长调节剂。以前的研究表明,由于主要器官的间质组织增生,在出生后,PHF14-NULL突变体死亡,包括肾脏。本研究的目的是探讨肾纤维化的PHF14功能。通过研究慢性肾损伤小鼠模型,我们发现在叶酸给药诱导的肾脏损伤后,在纤维化肾上上调pHF14。与野生型小鼠相比,PHF14-NULL小鼠在纤维化刺激后显示出更严重的肾纤维化。此外,通过转化生长因子-β(TGF-β)刺激来上调大鼠肾成纤维细胞的PHF14;当Smad3磷酸化被抑制时,这种上调被抑制。染色质免疫沉淀(芯片)测定进一步表明磷酸 - Smad3(P-Smad3)用作转录因子,以增强pHF14表达。缺乏PHF14表达增强的胶原I和α-平滑肌肌动蛋白(α-SMA)在体外诱导的TGF-β诱导的合成。通过选择性地抑制PDGF受体-α(PDGFR-α)转录,PHF14参与抑制血小板衍生的生长因子(PDGF)信号传导过激活。总之,PHF14表达在体内和体外纤维化模型上调,TGF-β/ SMAD3 / PHF14途径通过抑制PDGFR-α,作为TGF-β-主导的肾功能纤维化过程中的自限制机制表达。

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