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PMID: 25556649 已发表 · ppublish 英语

RECQL4 Regulates p53 Function In Vivo During Skeletogenesis.

Lu Linchao, Harutyunyan Karine, Jin Weidong, Wu Jianhong, Yang Tao, Chen Yuqing, Joeng Kyu Sang, Bae Yangjin, Tao Jianning, Dawson Brian C, Jiang Ming-Ming, Lee Brendan, Wang Lisa L

摘要

RECQ DNA helicases play critical roles in maintaining genomic stability, but their role in development has been less well studied. Rothmund-Thomson syndrome, RAPADILINO, and Baller-Gerold syndrome are rare genetic disorders caused by mutations in the RECQL4 gene. These patients have significant skeletal developmental abnormalities including radial ray, limb and craniofacial defects. To investigate the role of Recql4 in the developing skeletal system, we generated Recql4 conditional knockout mice targeting the skeletal lineage. Inactivation of Recql4 using the Prx1-Cre transgene led to limb abnormalities and craniosynostosis mimicking the major bone findings in human RECQL4 patients. These Prx1-Cre(+) ;Recql4(fl/fl) mice as well as Col2a1-Cre(+) ;Recql4(fl/fl) mice exhibited growth plate defects and an increased p53 response in affected tissues. Inactivation of Trp53 in these Recql4 mutants resulted in genetic rescue of the skeletal phenotypes, indicating an in vivo interaction between Recql4 and Trp53, and p53 activation as an underlying mechanism for the developmental bone abnormalities in RECQL4 disorders. Our findings show that RECQL4 is critical for skeletal development by modulating p53 activity in vivo.

关键词
RECQL4 Rothmund-Thomson syndrome cartilage genetic animal models skeletal development
文献信息
期刊
Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research
期刊简称
J Bone Miner Res
发表日期
2016-03-18
收录日期
2015-05-20
更新日期
2015-05-20
语言
英语
国家/地区
United States
NLM ID
8610640
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