Primrose Julia G B, Jain Lekha, Alhilali Mariam, Bolam Scott M, Monk A Paul, Munro Jacob T, Dalbeth Nicola, Poulsen Raewyn C
Department of Pharmacology and Clinical Pharmacology, Faculty of Medical and Health Sciences, University of Auckland, 85 Park Rd, Grafton, Auckland, New Zealand.
Department of Surgery, University of Auckland, Building 507, 22-30 Park Road, Grafton, Auckland, New Zealand; Department of Medicine, University of Auckland, Building 507, 22-30 Park Road, Grafton, Auckland, New Zealand.
Cell Signal. 2023 Sep;109:110800. doi: 10.1016/j.cellsig.2023.110800. Epub 2023 Jul 11.
Expression of key transcriptional regulators is altered in chondrocytes in osteoarthritis (OA). This contributes to an increase in production of cartilage-catabolizing enzymes such as MMP13 and ADAMTS5. RCOR1 and RCOR2, binding partners for the transcriptional repressor REST, have previously been found to be downregulated in OA chondrocytes although their function in chondrocytes is unclear. HES1 is a known REST/RCOR1 target gene and HES1 has been shown to promote MMP13 and ADAMTS5 expression in murine OA chondrocytes. The purpose of this study was to determine whether reduced REST/RCOR levels leads to increased HES1 expression in human OA chondrocytes and whether HES1 also promotes ADAMTS5 and MMP13 expression in these cells. Chondrocytes were isolated from osteoarthritic and adjacent macroscopically normal cartilage obtained from patients undergoing total knee arthroplasty. RNA and protein levels of REST, RCOR1 and RCOR2 were lower, but levels of HES1 higher, in chondrocytes isolated from osteoarthritic compared to macroscopically normal cartilage. Over-expression of either REST, RCOR1 or RCOR2 resulted in reduced HES1 levels in OA chondrocytes whereas knockdown of REST, RCOR1 or RCOR2 led to increased HES1 expression in chondrocytes from macroscopically normal cartilage. In OA chondrocytes, ADAMTS5 and MMP13 expression were reduced following HES1 knockdown, but further enhanced following HES1 over-expression. Levels of phosphorylated CaMKII were higher in chondrocytes from OA cartilage consistent with previous findings that HES1 only promotes gene transcription in the presence of active CaMKII. These findings identify the REST/RCOR/HES1 pathway as a contributing factor leading to increased ADAMTS5 and MMP13 expression in OA chondrocytes.
关键转录调节因子的表达在骨关节炎(OA)软骨细胞中发生改变。这导致了诸如MMP13和ADAMTS5等软骨分解酶的产生增加。转录抑制因子REST的结合伴侣RCOR1和RCOR2此前已被发现在OA软骨细胞中表达下调,尽管它们在软骨细胞中的功能尚不清楚。HES1是已知的REST/RCOR1靶基因,并且已表明HES1可促进小鼠OA软骨细胞中MMP13和ADAMTS5的表达。本研究的目的是确定REST/RCOR水平降低是否会导致人OA软骨细胞中HES1表达增加,以及HES1是否也会促进这些细胞中ADAMTS5和MMP13的表达。从接受全膝关节置换术患者的骨关节炎软骨及相邻肉眼正常软骨中分离软骨细胞。与肉眼正常软骨相比,从骨关节炎软骨中分离的软骨细胞中,REST、RCOR1和RCOR2的RNA和蛋白质水平较低,但HES1水平较高。过表达REST、RCOR1或RCOR2会导致OA软骨细胞中HES1水平降低,而敲低REST、RCOR1或RCOR2会导致肉眼正常软骨细胞中HES1表达增加。在OA软骨细胞中,敲低HES1后ADAMTS5和MMP13表达降低,但过表达HES1后进一步增强。OA软骨细胞中磷酸化CaMKII水平较高,这与之前的研究结果一致,即HES1仅在活性CaMKII存在的情况下促进基因转录。这些发现确定REST/RCOR/HES1通路是导致OA软骨细胞中ADAMTS5和MMP13表达增加的一个因素。