HSS Research Institute, Hospital for Special Surgery, New York, NY, 10021, USA.
Weill Cornell Medical College, New York, NY, 10021, USA.
Sci Rep. 2019 Jun 20;9(1):8905. doi: 10.1038/s41598-019-45334-5.
CHUK/IKKα contributes to collagenase-driven extracellular matrix remodeling and chondrocyte hypertrophic differentiation in vitro, in a kinase-independent manner. These processes contribute to osteoarthritis (OA), where chondrocytes experience a phenotypic shift towards hypertrophy concomitant with abnormal matrix remodeling. Here we investigated the contribution of IKKα to OA in vivo. To this end, we induced specific IKKα knockout in adult chondrocytes in AcanCreER; IKKα mice treated with tamoxifen (cKO). Vehicle-treated littermates were used as wild type controls (WT). At 12 weeks of age, WT and cKO mice were subjected to the destabilization of medial meniscus (DMM) model of post-traumatic OA. The cKO mice showed reduced cartilage degradation and collagenase activity and fewer hypertrophy-like features at 12 weeks after DMM. Interestingly, in spite of the protection from structural articular cartilage damage, the postnatal growth plates of IKKα cKO mice after DMM displayed abnormal architecture and composition associated with increased chondrocyte apoptosis, which were not as evident in the articular chondrocytes of the same animals. Together, our results provide evidence of a novel in vivo functional role for IKKα in cartilage degradation in post-traumatic OA, and also suggest intrinsic, cell-autonomous effects of IKKα in chondrocytes that control chondrocyte phenotype and impact on cell survival, matrix homeostasis, and remodeling.
CHUK/IKKα 通过非激酶依赖的方式促进体外胶原酶驱动的细胞外基质重塑和软骨细胞肥大分化。这些过程导致骨关节炎(OA),其中软骨细胞经历向肥大的表型转变,同时伴有异常的基质重塑。在这里,我们研究了 IKKα 在体内对 OA 的贡献。为此,我们在 AcanCreER 中诱导成年软骨细胞中特定的 IKKα 敲除,并用他莫昔芬(cKO)处理。用载体处理的同窝仔鼠作为野生型对照(WT)。在 WT 和 cKO 仔鼠 12 周龄时,对其进行内侧半月板(DMM)不稳定模型的创伤性 OA 造模。DMM 后 12 周,cKO 仔鼠的软骨降解和胶原酶活性降低,肥大样特征减少。有趣的是,尽管在结构关节软骨损伤方面得到了保护,但 DMM 后 IKKα cKO 仔鼠的出生后生长板显示出与增加的软骨细胞凋亡相关的异常结构和组成,而在同一动物的关节软骨中则不明显。总之,我们的研究结果为 IKKα 在创伤性 OA 中软骨降解的体内功能作用提供了证据,也表明 IKKα 在软骨细胞中具有内在的、细胞自主的作用,控制着软骨细胞的表型,并影响细胞的存活、基质的平衡和重塑。