Department of Molecular and Experimental Medicine, The Scripps Research Institute, La Jolla, California 92037.
Stem Cell Institute and Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, Minnesota 55455.
J Biol Chem. 2011 Dec 2;286(48):41489-41498. doi: 10.1074/jbc.M111.236984. Epub 2011 Sep 2.
The superficial zone (SZ) of articular cartilage is critical in maintaining tissue function and homeostasis and represents the site of the earliest changes in osteoarthritis (OA). The expression of chromatin protein HMGB2 is restricted to the SZ, which contains cells expressing mesenchymal stem cell (MSC) markers. Age-related loss of HMGB2 and gene deletion are associated with reduced SZ cellularity and early onset OA. This study addressed HMGB2 expression patterns in MSC and its role during differentiation. HMGB2 was detected at higher levels in human MSC as compared with human articular chondrocytes, and its expression declined during chondrogenic differentiation of MSC. Lentiviral HMGB2 transduction of MSC suppressed chondrogenesis as reflected by an inhibition of Col2a1 and Col10a1 expression. Conversely, in bone marrow MSC from Hmgb2(-/-) mice, Col10a1 was more strongly expressed than in wild-type MSC. This is consistent with in vivo results from mouse growth plates showing that Hmgb2 is expressed in proliferating and prehypertrophic zones but not in hypertrophic cartilage where Col10a1 is strongly expressed. Osteogenesis was also accelerated in Hmgb2(-/-) MSC. The expression of Runx2, which plays a major role in late stage chondrocyte differentiation, was enhanced in Hmgb2(-/-) MSC, and HMGB2 negatively regulated the stimulatory effect of Wnt/β-catenin signaling on the Runx2 proximal promoter. These results demonstrate that HMGB2 expression is inversely correlated with the differentiation status of MSC and that HMGB2 suppresses chondrogenic differentiation. The age-related loss of HMGB2 in articular cartilage may represent a mechanism responsible for the decline in adult cartilage stem cell populations.
关节软骨的表层区(SZ)对于维持组织功能和内稳态至关重要,是骨关节炎(OA)最早发生变化的部位。染色质蛋白 HMGB2 的表达局限于 SZ,其中包含表达间充质干细胞(MSC)标志物的细胞。与年龄相关的 HMGB2 缺失和基因缺失与 SZ 细胞减少和早发性 OA 有关。本研究探讨了 MSC 中 HMGB2 的表达模式及其在分化过程中的作用。与关节软骨细胞相比,人 MSC 中 HMGB2 的表达水平更高,并且在 MSC 的软骨分化过程中其表达水平下降。MSC 的慢病毒 HMGB2 转导抑制了软骨生成,表现为 Col2a1 和 Col10a1 表达的抑制。相反,在 Hmgb2(-/-) 小鼠的骨髓 MSC 中,Col10a1 的表达强于野生型 MSC。这与体内小鼠生长板的结果一致,表明 Hmgb2 在增殖和预肥大区表达,但不在 Col10a1 强烈表达的肥大软骨中表达。Hmgb2(-/-) MSC 中的成骨作用也加快了。在晚期软骨细胞分化中起主要作用的 Runx2 的表达在 Hmgb2(-/-) MSC 中增强,HMGB2 负调节 Wnt/β-catenin 信号对 Runx2 近端启动子的刺激作用。这些结果表明,HMGB2 的表达与 MSC 的分化状态呈负相关,并且 HMGB2 抑制软骨分化。关节软骨中与年龄相关的 HMGB2 缺失可能代表了导致成年软骨干细胞群体减少的机制。