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CEMIP (KIAA1199) induces a fibrosis-like process in osteoarthritic chondrocytes

机译:CEMIP(KIAA1199)诱导骨关节炎软骨细胞的纤维化样过程

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摘要

CEMIP (for “Cell migration-inducing protein” also called KIAA1199 and Hybid for “Hyaluronan-binding protein”) expression is increased in cancers and described as a regulator of cell survival, growth and invasion. In rheumatoid arthritis, CEMIP is referred to as an angiogenic marker and participates in hyaluronic acid degradation. In this study, CEMIP expression is investigated in healthy and osteoarthritis (OA) cartilage from human and mouse. Its role in OA physiopathology is deciphered, specifically in chondrocytes proliferation and dedifferentiation and in the extracellular matrix remodeling. To this end, CEMIP, αSMA and types I and III collagen expressions were assessed in human OA and non-OA cartilage. CEMIP expression was also investigated in a mouse OA model. CEMIP expression was studied in vitro using a chondrocyte dedifferentiation model. High-throughput RNA sequencing was performed on chondrocytes after CEMIP silencing. Results showed that CEMIP was overexpressed in human and murine OA cartilage and along chondrocytes dedifferentiation. Most of genes deregulated in CEMIP-depleted cells were involved in cartilage turnover (e.g., collagens), mesenchymal transition and fibrosis. CEMIP regulated β-catenin protein level. Moreover, CEMIP was essential for chondrocytes proliferation and promoted αSMA expression, a fibrosis marker, and TGFβ signaling towards the p-Smad2/3 (Alk5/PAI-1) pathway. Interestingly, CEMIP was induced by the pSmad1/5 (Alk1) pathway. αSMA and type III collagen expressions were overexpressed in human OA cartilage and along chondrocytes dedifferentiation. Finally, CEMIP was co-expressed in situ with αSMA in all OA cartilage layers. In conclusion, CEMIP was sharply overexpressed in human and mouse OA cartilage and along chondrocytes dedifferentiation. CEMIP-regulated transdifferentiation of chondrocytes into “chondro-myo-fibroblasts” expressing α-SMA and type III collagen, two fibrosis markers. Moreover, these “chondro-myo-fibroblasts” were found in OA cartilage but not in healthy cartilage.
机译:CEMIP(用于“诱导细胞迁移的蛋白质”,也称为KIAA1199,而Hybid则用于“透明质酸结合蛋白”)的表达在癌症中增加,并被描述为细胞存活,生长和侵袭的调节剂。在类风湿性关节炎中,CEMIP被称为血管生成标记物,并参与透明质酸的降解。在这项研究中,研究了人类和小鼠健康和骨关节炎(OA)软骨中CEMIP的表达。破译其在OA生理病理学中的作用,特别是在软骨细胞的增殖和去分化以及细胞外基质重塑中。为此,在人OA和非OA软骨中评估了CEMIP,αSMA以及I型和III型胶原蛋白的表达。还在小鼠OA模型中研究了CEMIP表达。使用软骨细胞去分化模型体外研究CEMIP表达。 CEMIP沉默后,对软骨细胞进行高通量RNA测序。结果表明,CEMIP在人和鼠类OA软骨以及软骨细胞去分化中过度表达。在CEMIP耗尽的细胞中失控的大多数基因都与软骨更新(例如胶原蛋白),间充质转化和纤维化有关。 CEMIP调节β-catenin蛋白水平。此外,CEMIP对于软骨细胞的增殖至关重要,并能促进αSMA表达,纤维化标志物和TGFβ向p-Smad2 / 3(Alk5 / PAI-1)通路的信号传导。有趣的是,CEMIP是由pSmad1 / 5(Alk1)途径诱导的。 αSMA和III型胶原表达在人OA软骨和软骨细胞去分化中过表达。最后,在所有OA软骨层中,CEMIP与αSMA原位共表达。总之,CEMIP在人和小鼠OA软骨以及软骨细胞去分化中急剧过量表达。 CEMIP调节软骨细胞转分化为表达两种纤维化标记物α-SMA和III型胶原的“软骨肌成纤维细胞”。此外,这些“软骨肌成纤维细胞”在OA软骨中发现,但在健康软骨中未发现。

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