Greenblatt Matthew B, Shim Jae-Hyuck, Bok Seoyeon, Kim Jung-Min
Department of Pathology and Laboratory Medicine, Weill Cornell Medical, New York, NY, USA.
Research Division, Hospital for Special Surgery, New York, NY, USA.
J Bone Metab. 2022 Feb;29(1):1-15. doi: 10.11005/jbm.2022.29.1.1. Epub 2022 Feb 28.
Extracellular signal-regulated kinases (ERKs) are evolutionarily ancient signal transducers of the mitogen-activated protein kinase (MAPK) family that have long been linked to the regulation of osteoblast differentiation and bone formation. Here, we review the physiological functions, biochemistry, upstream activators, and downstream substrates of the ERK pathway. ERK is activated in skeletal progenitors and regulates osteoblast differentiation and skeletal mineralization, with ERK serving as a key regulator of Runt-related transcription factor 2, a critical transcription factor for osteoblast differentiation. However, new evidence highlights context-dependent changes in ERK MAPK pathway wiring and function, indicating a broader set of physiological roles associated with changes in ERK pathway components or substrates. Consistent with this importance, several human skeletal dysplasias are associated with dysregulation of the ERK MAPK pathway, including neurofibromatosis type 1 and Noonan syndrome. The continually broadening array of drugs targeting the ERK pathway for the treatment of cancer and other disorders makes it increasingly important to understand how interference with this pathway impacts bone metabolism, highlighting the importance of mouse studies to model the role of the ERK MAPK pathway in bone formation.
细胞外信号调节激酶(ERKs)是丝裂原活化蛋白激酶(MAPK)家族中进化上古老的信号转导分子,长期以来一直与成骨细胞分化和骨形成的调节有关。在此,我们综述ERK信号通路的生理功能、生物化学、上游激活因子和下游底物。ERK在骨骼祖细胞中被激活,并调节成骨细胞分化和骨骼矿化,ERK作为Runx相关转录因子2的关键调节因子,而成骨细胞分化的关键转录因子。然而,新证据突出了ERK MAPK信号通路连接和功能中依赖于背景的变化,表明与ERK信号通路成分或底物变化相关的生理作用范围更广。与此重要性一致,几种人类骨骼发育不良与ERK MAPK信号通路失调有关,包括1型神经纤维瘤病和努南综合征。越来越多针对ERK信号通路治疗癌症和其他疾病的药物,使得了解干扰该信号通路如何影响骨代谢变得越来越重要,这突出了小鼠研究对于模拟ERK MAPK信号通路在骨形成中的作用的重要性。