Knowles Helen J
Botnar Research Centre, Nuffield Department of Orthopaedics Rheumatology & Musculoskeletal Sciences, University of Oxford, Headington, Oxford, OX3 7LD, UK.
Calcif Tissue Int. 2017 Apr;100(4):382-391. doi: 10.1007/s00223-016-0228-1. Epub 2017 Jan 18.
Over-activation of osteoclasts is directly responsible for pathological bone loss in conditions such as rheumatoid arthritis and cancer metastasis to bone. Hypoxia is a common feature of these conditions, associated with poor prognosis, which also stimulates osteoclast-mediated bone resorption via induction of the hypoxia-inducible transcription factor HIF-1α. Here, we investigate the effects of fibroblast growth factor 11 (FGF11) on osteoclast function. FGF11 is an intracellular FGF that was induced both by hypoxia (2% O, p < 0.01) and by inhibition of the HIF-regulating prolyl hydroxylase enzymes (CoCl, p < 0.001) in osteoclasts. Isoform-specific siRNA demonstrated that the induction of Fgf11 mRNA expression by hypoxia is HIF-1α-dependent (p < 0.01). Hypoxic stimulation of bone resorption was inhibited in osteoclasts treated with siRNA targeting FGF11 (p < 0.05). This was at least partially due to reduced secretion of an unidentified pro-resorptive factor downstream of FGF11. FGF11 expression within hypoxic, resorbing osteoclasts co-localised with microtubule-associated alpha-tubulin. FGF11 was also abundantly expressed in osteoclasts within the rheumatoid synovium and in giant cell tumour of bone. This study suggests FGF11 as a novel factor driving pathological bone resorption in osteolytic disease and as a potential target for the development of new anti-resorptive therapeutic agents.
破骨细胞的过度激活直接导致类风湿性关节炎和癌症骨转移等病症中的病理性骨质流失。缺氧是这些病症的一个常见特征,与预后不良相关,它还通过诱导缺氧诱导转录因子HIF-1α来刺激破骨细胞介导的骨吸收。在此,我们研究成纤维细胞生长因子11(FGF11)对破骨细胞功能的影响。FGF11是一种细胞内FGF,在破骨细胞中,缺氧(2%氧气,p < 0.01)和HIF调节脯氨酰羟化酶的抑制(氯化钴,p < 0.001)均可诱导其产生。亚型特异性siRNA表明,缺氧对Fgf11 mRNA表达的诱导是HIF-1α依赖性的(p < 0.01)。用靶向FGF11的siRNA处理的破骨细胞中,缺氧对骨吸收的刺激作用受到抑制(p < 0.05)。这至少部分是由于FGF11下游一种未知的促吸收因子分泌减少所致。缺氧、正在进行吸收的破骨细胞内的FGF11表达与微管相关的α-微管蛋白共定位。FGF11在类风湿性滑膜内的破骨细胞和骨巨细胞瘤中也大量表达。本研究表明FGF11是驱动溶骨性疾病中病理性骨吸收的一种新因子,也是开发新型抗吸收治疗药物的潜在靶点。