Inhibition of Cdk5 increases osteoblast differentiation and bone mass and improves fracture healing

被引:0
作者
Mubashir Ahmad
Benjamin Thilo Krüger
Torsten Kroll
Sabine Vettorazzi
Ann-Kristin Dorn
Florian Mengele
Sooyeon Lee
Sayantan Nandi
Dilay Yilmaz
Miriam Stolz
Naveen Kumar Tangudu
David Carro Vázquez
Johanna Pachmayr
Ion Cristian Cirstea
Maja Vujic Spasic
Aspasia Ploubidou
Anita Ignatius
Jan Tuckermann
机构
[1] Institute of Comparative Molecular Endocrinology (CME),Department of Endocrinology
[2] Ulm University,UPMC Hillman Cancer Center, Department of Pharmacology and Chemical Biology
[3] Institute of Orthopedic Research and Biomechanics,undefined
[4] Ulm University,undefined
[5] Leibniz Institute on Aging – Fritz Lipmann Institute (FLI),undefined
[6] Praxisklinik für Orthopädie,undefined
[7] Unfall- und Neurochirurgie Prof. Bischoff/Dr. Spies/Dr. Mengele,undefined
[8] Paracelsus Medizinische Privatuniverstät,undefined
[9] Institute of Pharmacy,undefined
[10] Ludwig Maximilians University Munich,undefined
[11] Institute of Orthopedic Research and Biomechanics,undefined
[12] Ulm University,undefined
[13] University of Pittsburgh,undefined
[14] 5115 Center Avenue,undefined
[15] TAmiRNA GmbH,undefined
来源
Bone Research | / 10卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Identification of regulators of osteoblastogenesis that can be pharmacologically targeted is a major goal in combating osteoporosis, a common disease of the elderly population. Here, unbiased kinome RNAi screening in primary murine osteoblasts identified cyclin-dependent kinase 5 (Cdk5) as a suppressor of osteoblast differentiation in both murine and human preosteoblastic cells. Cdk5 knockdown by siRNA, genetic deletion using the Cre-loxP system, or inhibition with the small molecule roscovitine enhanced osteoblastogenesis in vitro. Roscovitine treatment significantly enhanced bone mass by increasing osteoblastogenesis and improved fracture healing in mice. Mechanistically, downregulation of Cdk5 expression increased Erk phosphorylation, resulting in enhanced osteoblast-specific gene expression. Notably, simultaneous Cdk5 and Erk depletion abrogated the osteoblastogenesis conferred by Cdk5 depletion alone, suggesting that Cdk5 regulates osteoblast differentiation through MAPK pathway modulation. We conclude that Cdk5 is a potential therapeutic target to treat osteoporosis and improve fracture healing.
引用
收藏
相关论文
共 134 条
[1]  
Bianco P(2015)Skeletal stem cells Development 142 1023-1027
[2]  
Robey PG(2015)Biology of bone tissue: structure, function, and factors that influence bone cells BioMed. Res. Int. 2015 421746-145
[3]  
Florencio-Silva R(2011)Disorders of bone remodeling Annu. Rev. Pathol. 6 121-774
[4]  
Sasso GR(2006)Osteoporosis in men Arq. Brasi. Endocrinol. Metab. 50 764-1441
[5]  
Sasso-Cerri E(2001)Effect of parathyroid hormone (1-34) on fractures and bone mineral density in postmenopausal women with osteoporosis N. Engl. J. Med. 344 1434-204
[6]  
Simoes MJ(2014)Anti-sclerostin antibodies: utility in treatment of osteoporosis Maturitas 78 199-474
[7]  
Cerri PS(2003)Genetic disorders of the skeleton: a developmental approach Am. J. Hum. Genet. 73 447-227
[8]  
Feng X(2015)Advances in skeletal dysplasia genetics Annu. Rev. Genom. Hum. Genet. 16 199-532
[9]  
McDonald JM(2001)Genetic control of skeletal development Curr/. Opin. Genet. Dev. 11 527-10871
[10]  
Binkley N(2018)Cell-based RNAi screening and high-content analysis in primary calvarian osteoblasts applied to identification of osteoblast differentiation regulators Sci. Rep. 8 10867-6848