移码突变
锁骨颅骨发育不良
生物
运行x2
遗传学
错义突变
交易激励
突变
突变体
转录因子
分子生物学
基因
解剖
多余的
作者
Lei Gong,Bekzod Odilov,Feng Han,Fuqiang Liu,Yujing Sun,Ningxin Zhang,Xiaolin Zuo,Jiaojiao Yang,Shouyu Wang,Xinguo Hou,Jianmin Ren
出处
期刊:Genes & Genomics
[Springer Science+Business Media]
日期:2022-03-02
卷期号:44 (6): 683-690
被引量:3
标识
DOI:10.1007/s13258-022-01229-w
摘要
Abstract Background Cleidocranial dysplasia (CCD) is a rare genetic disorder affecting bone and cartilage development. Clinical features of CCD comprise short stature, delayed ossification of craniofacial structures with numerous Wormian bones, underdeveloped or aplastic clavicles and multiple dental anomalies. Several studies have revealed that CCD development is strongly linked with different mutations in runt-related transcription factor 2 ( RUNX2 ) gene. Objective Identification and functional characterization of RUNX2 mutation associated with CCD. Methods We performed genetic testing of a patient with CCD using whole exome sequencing and found a novel RUNX2 frameshift mutation: c.1550delT in a sporadic case. We also compared the functional activity of the mutant and wild-type RUNX2 through immunofluorescence microscopy and osteocalcin promoter luciferase assay. Results We found a novel RUNX2 frameshift mutation, c.1550delT (p.Trp518Glyfs*60). Both mutant RUNX2 and wild-type RUNX2 protein were similarly confined in the nuclei. The novel mutation caused abrogative transactivation activity of RUNX2 on osteocalcin promoter. Conclusions We explored a novel RUNX2 deletion/frameshift mutation in a sporadic CCD patient. This finding suggests that the VWRPY domain may play a key role in RUNX2 transactivation ability.
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