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首页> 外文期刊>Journal of cellular biochemistry. >Gremlin aggravates hyperglycemia-induced podocyte injury by a TGFβ/smad dependent signaling pathway
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Gremlin aggravates hyperglycemia-induced podocyte injury by a TGFβ/smad dependent signaling pathway

机译:Gremlin通过TGFβ/ smad依赖性信号通路加重高血糖诱导的足细胞损伤

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Gremlin is a bone morphogenic protein (BMP) antagonist and is elevated in diabetic kidney tissues. In the early course of diabetic nephropathy (DN), podocyte are injured. We studied the protein and gene expression of gremlin in mice podocytes cultured in hyperglycemia ambient. The role of gremlin on podocyte injury and the likely signaling pathways involved were determined. Expression of gremlin was visualized by confocal microscopy. Recombinant mouse gremlin and small interfering RNA (siRNA) targeting to gremlin1 identified the role played by gremlin on podocytes. Study of canonical (smad2/3) and non-canonical (p38MAPK and JNK1/2) transforming growth factor beta (TGFβ)/smad mediated signaling revealed the putative signaling mechanisms involved. Smad2/3 siRNA and TGFβ receptor inhibition (SB431542) were used to probe canonical TGFβ/smad signaling in gremlin-induced podocyte injury. Apoptosis of podocytes was measured by TUNEL assay. Gremlin expression was enhanced in high glucose cultured mouse podocytes, and was localized predominantly in the cytoplasm and negligibly on the cell membrane. Not only expression of nephrin and synaptopodin were decreased on treatment with gremlin, but also synaptopodin rearrangement and nephrin relocalization were evident. Knockdown gremlin1 or smad2/3 by siRNA, and inhibition of TGFβR (SB431542) attenuated podocyte injury. Inhibition of canonical TGF-β signal blocked the injury of gremlin on podocytes. In conclusion, gremlin was clearly elevated in high glucose cultured mouse podocytes, and likely employed endogenous canonical TGFβ1/Smad signaling to induce podocyte injury. Knockdown gremlin1 by siRNA may be clinically useful in the attenuation of podocyte injury.
机译:Gremlin是一种骨形态发生蛋白(BMP)拮抗剂,在糖尿病肾组织中升高。在糖尿病性肾病(DN)的早期过程中,足细胞受损。我们研究了在高血糖环境下培养的小鼠足细胞中gremlin的蛋白质和基因表达。确定了葛瑞姆林对足细胞损伤的作用以及可能涉及的信号通路。通过共聚焦显微镜观察gremlin的表达。重组小鼠gremlin和靶向gremlin1的小干扰RNA(siRNA)确定了gremlin在足细胞上发挥的作用。对经典(smad2 / 3)和非经典(p38MAPK和JNK1 / 2)转化生长因子β(TGFβ)/ smad介导的信号传导的研究揭示了可能的信号传导机制。使用Smad2 / 3 siRNA和TGFβ受体抑制(SB431542)来探测在gremlin诱导的足细胞损伤中的典型TGFβ/ smad信号传导。通过TUNEL测定法测量足细胞的凋亡。在高葡萄糖培养的小鼠足细胞中,Gremlin表达增强,并且主要位于细胞质中,而在细胞膜上微不足道。葛瑞姆林治疗不仅降低了肾素和突触足蛋白的表达,而且还明显地突触了突触足蛋白重排和肾素重新定位。 siRNA抑制gremlin1或smad2 / 3,抑制TGFβR(SB431542)可减轻足细胞损伤。抑制典型的TGF-β信号可阻断gremlin对足细胞的损伤。总之,在高葡萄糖培养的小鼠足细胞中,gremlin明显升高,并可能利用内源性规范性TGFβ1/ Smad信号诱导足细胞损伤。 siRNA抑制gremlin1在减轻足细胞损伤方面可能在临床上有用。

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