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首页> 外文期刊>American Journal of Translational Research >Inhibiting post-translational core fucosylation protects against albumin-induced proximal tubular epithelial cell injury
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Inhibiting post-translational core fucosylation protects against albumin-induced proximal tubular epithelial cell injury

机译:抑制翻译后核心岩藻糖基化可防止白蛋白引起的近端肾小管上皮细胞损伤

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摘要

Albuminuria is an independent risk factor for renal interstitial fibrosis (RIF). Glomerular-filtered albumin in endocytic and non-endocytic pathways may injure proximal tubular epithelial cells (PTECs) via megalin and TGFβRII, respectively. Since megalin and TGFβRII are both modified by post-translational core fucosylation, which plays a critical role in RIF. Thus, we sought to identify whether core fucosylation is a potential target for reducing albumin-induced injury to PTECs. We constructed a human PTEC-derived cell line (HK-2 cells) and established an in vitro model of bovine serum albumin (BSA) injury. RNAi was used to inhibit the expression of megalin, TGFβRII, and Fut8. Western blotting, immunostaining, ELISA, lectin blotting, and fluorescence-activated cell sorting were used to identify BSA-induced endocytic and non-endocytic damage in HK-2 cells. Fut8 is a core fucosylation-related gene, which is significantly increased in HK-2 cells following an incubation with BSA. Fut8 siRNA significantly reduced the core fucosylation of megalin and TGFβRII and also inhibited the activation of the TGFβ/TGFβRII/Smad2/3 signaling pathway. Furthermore, Fut8 siRNA could reduce monocyte chemotactic protein-1, reactive oxygen species, and apoptosis, as well as significantly decrease the fibronectin and collagen I levels in BSA-overloaded HK-2 cells. Core fucosylation inhibition was more effective than inhibiting either megalin or TGFβRII for the prevention of albumin-induced injury to PTECs. Our findings indicate that post-translational core fucosylation is essential for the albumin-induced injury to PTECs. Thus, the inhibition of core fucosylation could effectively alleviate albumin-induced endocytic and non-endocytic injury to PTECs. Our study provides a potential therapeutic target for albuminuria-induced injury.
机译:蛋白尿是肾间质纤维化(RIF)的独立危险因素。内吞和非内吞途径中的肾小球滤过白蛋白可能分别通过巨蛋白和TGFβRII损伤近端肾小管上皮细胞(PTEC)。由于巨蛋白和TGFβRII都被翻译后核心岩藻糖基化修饰,这在RIF中起关键作用。因此,我们试图确定核心岩藻糖基化是否是减少白蛋白诱导的PTEC损伤的潜在靶标。我们构建了人PTEC衍生的细胞系(HK-2细胞),并建立了牛血清白蛋白(BSA)损伤的体外模型。 RNAi被用来抑制megalin,TGFβRII和Fut8的表达。 Western印迹,免疫染色,ELISA,凝集素印迹和荧光激活的细胞分选被用来识别BSA诱导HK-2细胞内吞和非内吞损伤。 Fut8是与岩藻糖基化相关的核心基因,与BSA孵育后在HK-2细胞中显着增加。 Fut8 siRNA显着降低了巨蛋白和TGFβRII的核心岩藻糖基化,并且还抑制了TGFβ/TGFβRII/ Smad2 / 3信号通路的激活。此外,Fut8 siRNA可以减少单核细胞趋化蛋白1,活性氧和细胞凋亡,并显着降低BSA重载HK-2细胞中的纤连蛋白和胶原蛋白I水平。核心岩藻糖基化抑制作用比抑制巨蛋白或TGFβRII更为有效,以防止白蛋白引起的PTEC损伤。我们的发现表明,翻译后核心岩藻糖基化对于白蛋白诱导的PTEC损伤至关重要。因此,抑制核心岩藻糖基化可以有效减轻白蛋白对PTECs的内吞和非内吞损伤。我们的研究为蛋白尿引起的损伤提供了潜在的治疗靶标。

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