Suppr超能文献

滑液素通过调节浅层区细胞的分化来维持关节软骨的稳态。

Lubricin Contributes to Homeostasis of Articular Cartilage by Modulating Differentiation of Superficial Zone Cells.

机构信息

Sensory and Motor System Medicine, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.

Bone and Cartilage Regenerative Medicine, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.

出版信息

J Bone Miner Res. 2021 Apr;36(4):792-802. doi: 10.1002/jbmr.4226. Epub 2020 Dec 21.

Abstract

Lubricin encoded by the proteoglycan 4 (Prg4) gene is produced from superficial zone (SFZ) cells of articular cartilage and synoviocytes, which is indispensable for lubrication of joint surfaces. Loss-of-function of human and mouse Prg4 results in early-onset arthropathy accompanied by lost SFZ cells and hyperplastic synovium. Here, we focused on increases in the thickness of articular cartilage in Prg4-knockout joints and analyzed the underlying mechanisms. In the late stage of articular cartilage development, the articular cartilage was thickened at 2 to 4 weeks and the SFZ disappeared at 8 weeks in Prg4-knockout mice. Similar changes were observed in cultured Prg4-knockout femoral heads. Cell tracking showed that Prg4-knockout SFZ cells at 1 week of age expanded to deep layers after 1 week. In in vitro experiments, overexpression of Prg4 lacking a mucin-like domain suppressed differentiation of ATDC5 cells markedly, whereas pellets of Prg4-knockout SFZ cells showed enhanced differentiation. RNA sequencing identified matrix metalloproteinase 9 (Mmp9) as the top upregulated gene by Prg4 knockout. Mmp9 expressed in the SFZ was further induced in Prg4-knockout mice. The increased expression of Mmp9 by Prg4 knockout was canceled by IκB kinase (IKK) inhibitor treatment. Phosphorylation of Smad2 was also enhanced in Prg4-knockout cell pellets, which was canceled by the IKK inhibitor. Expression of Mmp9 and phosphorylated Smad2 during articular cartilage development was enhanced in Prg4-knockout joints. Lubricin contributes to homeostasis of articular cartilage by suppressing differentiation of SFZ cells, and the nuclear factor-kappa B-Mmp9-TGF-β pathway is probably responsible for the downstream action of lubricin. © 2020 American Society for Bone and Mineral Research (ASBMR).

摘要

由蛋白聚糖 4 (Prg4) 基因编码的黏蛋白,由关节软骨的表浅区 (SFZ) 细胞和滑膜细胞产生,对于关节表面的润滑是必不可少的。人类和小鼠 Prg4 的功能丧失会导致关节病的早期发作,伴有 SFZ 细胞丢失和滑膜增生。在这里,我们专注于 Prg4 基因敲除关节中关节软骨厚度的增加,并分析了潜在的机制。在关节软骨发育的晚期,关节软骨在 2 至 4 周时变厚,在 8 周时 SFZ 消失在 Prg4 基因敲除小鼠中。在培养的 Prg4 基因敲除股骨头中也观察到类似的变化。细胞追踪显示,1 周龄 Prg4 基因敲除 SFZ 细胞在 1 周后扩展到深层。在体外实验中,缺乏黏蛋白样结构域的 Prg4 过表达显著抑制 ATDC5 细胞的分化,而 Prg4 基因敲除 SFZ 细胞的细胞球显示出增强的分化。RNA 测序鉴定出基质金属蛋白酶 9 (Mmp9) 是 Prg4 基因敲除后上调最明显的基因。在 Prg4 基因敲除小鼠中,SFZ 中表达的 Mmp9 进一步被诱导。Prg4 基因敲除导致的 Mmp9 表达增加被 IκB 激酶 (IKK) 抑制剂处理所取消。Prg4 基因敲除细胞球中 Smad2 的磷酸化也增强,而 IKK 抑制剂可使其消除。在 Prg4 基因敲除关节中,Mmp9 和磷酸化 Smad2 的表达在关节软骨发育过程中增强。黏蛋白通过抑制 SFZ 细胞的分化来维持关节软骨的稳态,核因子-κB-Mmp9-TGF-β 通路可能是黏蛋白下游作用的原因。©2020 美国骨骼矿物质研究学会 (ASBMR)。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验