YAP维持骨关节炎中软骨干细胞/祖细胞的稳态。
YAP maintains cartilage stem/progenitor cell homeostasis in osteoarthritis.
作者信息
Zhang Lina, Wang Xinxing, Xia Guang, Huang Junjie, Wen Zi, Liang Chi, Cao Xu, Zhou Yong, Wu Song
机构信息
Department of Orthopaedics, Hunan Provincial People's Hospital, Hunan Normal University, Changsha, 410005, China.
Department of Orthopaedics, The Third Xiangya Hospital, Central South University, Changsha, 410013, China.
出版信息
J Orthop Translat. 2024 May 22;46:79-90. doi: 10.1016/j.jot.2024.03.004. eCollection 2024 May.
BACKGROUND
The cartilage stem/progenitor cells (CSPC) play a critical role in maintaining cartilage homeostasis. However, the effects of phenotypic fluctuations of CSPC on cartilage degeneration and the role of CSPC in the pathogenesis of OA is largely unknown.
METHODS
The cartilage samples of 3 non-OA and 10 OA patients were collected. Human CSPC (hCSPC) derived from these patients were isolated, identified, and evaluated for cellular functions. Additionally, chondrocytes derived from OA patients were isolated. The effect of Yes-associated protein (YAP) expression on hCSPC was investigated . The OA rat model was established by Hulth's method. Lentivirus-mediated YAP (Lv-YAP) or lentivirus-mediated YAP RNAi (Lv-YAP-RNAi) was injected intra-articularly to modulate YAP expression in rat joints. In addition, allogeneic rat CSPC (rCSPC) overexpressing or silencing YAP were transplanted by intra-articularly injection. We also evaluated the functions of rCSPC and the OA-related cartilage phenotype in the rat model. Finally, the transcriptome of OA rCSPC overexpressing YAP was examined to explore the potential downstream targets of YAP in rCSPC.
RESULTS
hCSPC derived from OA patients exhibited differential chondrogenesis capacity. Among them, a subset of hCSPC showed pronounced dysfunction, including impaired chondrogenic differentiation, inhibition of proliferation and migration, and downregulation of lubricin. Additionally, YAP was lowly expressed in quiescent non-OA hCSPC, upregulated in activated OA hCSPC, but significantly downregulated in dysfunctional OA hCSPC. Notably, the overexpression of YAP in OA hCSPC improved the proliferation, lubricin production, cell migration, and senescence, while silencing YAP had the opposite effect. In vivo, upregulation of YAP in the joint delayed OA progression and improved the cartilage regeneration capacity of rCSPC. Using transcriptomic analysis, we found that YAP may regulate rCSPC function by upregulating Baculoviral IAP repeat-containing 2 (BIRC2). Importantly, the knockdown of BIRC2 partly blocked the regulation of YAP on the CSPC function.
CONCLUSION
Dysfunction of CSPC compromises the intrinsic repair capacity of cartilage and impairs cartilage homeostasis in OA. Notably, the transcriptional co-activator YAP plays a critical role in maintaining CSPC function through potential target gene BIRC2.
THE TRANSLATIONAL POTENTIAL OF THIS ARTICLE
In this study, we observed targeting the YAP-BIRC2 axis improved the CSPC function and restored the cartilage homeostasis in OA. This study provides a potential stem cell-modifying OA therapy.
背景
软骨干/祖细胞(CSPC)在维持软骨内环境稳定中起关键作用。然而,CSPC表型波动对软骨退变的影响以及CSPC在骨关节炎(OA)发病机制中的作用尚不清楚。
方法
收集3例非OA患者和10例OA患者的软骨样本。分离、鉴定并评估源自这些患者的人CSPC(hCSPC)的细胞功能。此外,分离源自OA患者的软骨细胞。研究Yes相关蛋白(YAP)表达对hCSPC的影响。采用Hulth法建立OA大鼠模型。关节腔内注射慢病毒介导的YAP(Lv-YAP)或慢病毒介导的YAP RNA干扰(Lv-YAP-RNAi)以调节大鼠关节中YAP的表达。此外,通过关节腔内注射移植过表达或沉默YAP的同种异体大鼠CSPC(rCSPC)。我们还评估了大鼠模型中rCSPC的功能和OA相关的软骨表型。最后,检测过表达YAP的OA rCSPC的转录组,以探索YAP在rCSPC中的潜在下游靶点。
结果
源自OA患者的hCSPC表现出不同的软骨生成能力。其中,一部分hCSPC表现出明显的功能障碍,包括软骨分化受损、增殖和迁移抑制以及润滑蛋白下调。此外,YAP在静止的非OA hCSPC中低表达,在活化的OA hCSPC中上调,但在功能失调的OA hCSPC中显著下调。值得注意的是,OA hCSPC中YAP的过表达改善了增殖、润滑蛋白产生、细胞迁移和衰老,而沉默YAP则产生相反的效果。在体内,关节中YAP的上调延迟了OA进展并提高了rCSPC的软骨再生能力。通过转录组分析,我们发现YAP可能通过上调含杆状病毒IAP重复序列2(BIRC2)来调节rCSPC功能。重要的是,敲低BIRC2部分阻断了YAP对CSPC功能的调节。
结论
CSPC功能障碍损害了软骨的内在修复能力并破坏了OA中的软骨内环境稳定。值得注意的是,转录共激活因子YAP通过潜在靶基因BIRC2在维持CSPC功能中起关键作用。
本文的转化潜力
在本研究中,我们观察到靶向YAP-BIRC2轴可改善CSPC功能并恢复OA中的软骨内环境稳定。本研究提供了一种潜在的干细胞修饰OA治疗方法。