Chen Sheng, Wu Xiaohao, Lai Yumei, Chen Di, Bai Xiaochun, Liu Sheng, Wu Yongchao, Chen Mingjue, Lai Yuxiao, Cao Huiling, Shao Zengwu, Xiao Guozhi
Department of Orthopaedics, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.
Department of Biochemistry, School of Medicine, Southern University of Science and Technology, Guangdong Provincial Key Laboratory of Cell Microenvironment and Disease Research, Shenzhen Key Laboratory of Cell Microenvironment, Shenzhen, 518055, China.
Bone Res. 2022 Jan 10;10(1):5. doi: 10.1038/s41413-021-00179-5.
Intervertebral disc (IVD) degeneration (IVDD) is the main cause of low back pain with major social and economic burdens; however, its underlying molecular mechanisms remain poorly defined. Here we show that the focal adhesion protein Kindlin-2 is highly expressed in the nucleus pulposus (NP), but not in the anulus fibrosus and the cartilaginous endplates, in the IVD tissues. Expression of Kindlin-2 is drastically decreased in NP cells in aged mice and severe IVDD patients. Inducible deletion of Kindlin-2 in NP cells in adult mice causes spontaneous and striking IVDD-like phenotypes in lumbar IVDs and largely accelerates progression of coccygeal IVDD in the presence of abnormal mechanical stress. Kindlin-2 loss activates Nlrp3 inflammasome and stimulates expression of IL-1β in NP cells, which in turn downregulates Kindlin-2. This vicious cycle promotes extracellular matrix (ECM) catabolism and NP cell apoptosis. Furthermore, abnormal mechanical stress reduces expression of Kindlin-2, which exacerbates Nlrp3 inflammasome activation, cell apoptosis, and ECM catabolism in NP cells caused by Kindlin-2 deficiency. In vivo blocking Nlrp3 inflammasome activation prevents IVDD progression induced by Kindlin-2 loss and abnormal mechanical stress. Of translational significance, adeno-associated virus-mediated overexpression of Kindlin-2 inhibits ECM catabolism and cell apoptosis in primary human NP cells in vitro and alleviates coccygeal IVDD progression caused by mechanical stress in rat. Collectively, we establish critical roles of Kindlin-2 in inhibiting Nlrp3 inflammasome activation and maintaining integrity of the IVD homeostasis and define a novel target for the prevention and treatment of IVDD.
椎间盘(IVD)退变(IVDD)是导致腰痛的主要原因,带来了重大的社会和经济负担;然而,其潜在的分子机制仍不清楚。在此我们表明,黏着斑蛋白Kindlin-2在IVD组织的髓核(NP)中高表达,但在纤维环和软骨终板中不表达。在老年小鼠和严重IVDD患者的NP细胞中,Kindlin-2的表达显著降低。在成年小鼠的NP细胞中诱导性缺失Kindlin-2会导致腰椎IVD出现自发且明显的IVDD样表型,并且在存在异常机械应力的情况下,会大大加速尾椎IVDD的进展。Kindlin-2缺失会激活Nlrp3炎性小体并刺激NP细胞中IL-1β的表达,进而下调Kindlin-2。这种恶性循环促进细胞外基质(ECM)分解代谢和NP细胞凋亡。此外,异常机械应力会降低Kindlin-2的表达,这会加剧Kindlin-2缺乏引起的NP细胞中Nlrp3炎性小体激活、细胞凋亡和ECM分解代谢。在体内阻断Nlrp3炎性小体激活可防止由Kindlin-2缺失和异常机械应力诱导的IVDD进展。具有转化意义的是,腺相关病毒介导的Kindlin-2过表达在体外可抑制原代人NP细胞中的ECM分解代谢和细胞凋亡,并减轻大鼠机械应力引起的尾椎IVDD进展。总体而言,我们确立了Kindlin-2在抑制Nlrp3炎性小体激活和维持IVD稳态完整性方面的关键作用,并确定了预防和治疗IVDD的新靶点。