Pu Tian, Liu Yang, Xu Rang, Li Fen, Chen Sun, Sun Kun
Department of Pediatric Cardiology, Xinhua Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Scientific Research Center, Xinhua Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Mol Genet Genomics. 2018 Feb;293(1):217-223. doi: 10.1007/s00438-017-1373-6. Epub 2017 Oct 10.
Conotruncal heart defects (CTDs) are a group of cardiac malformations that involve outflow tract anomalies and the arterial pole of the heart. Recent reports have identified mutations in a number of genes associated with CTDs in human and animal models. ZFPM2 plays a role in cardiac development by acting as a transcriptional cofactor that interacts with GATA4. Because ZFPM2 was found to be important for cardiac development in a knockout mouse model, we screened for ZFPM2 mutations in 528 CTD patients. We identified six rare and nonsynonymous ZFPM2 variants, and this was the first time that five of these variants (R698Q, R736L, E1005K, T32A, and I488V) were reported in East Asians. Western blots showed that there was no significant difference in the protein expression of wild-type ZFPM2, ZFPM2R698Q, or ZFPM2R736L. A dual luciferase reporter assay demonstrated that both ZFPM2 mutants R698Q and R736L reduced GATA4-mediated transcription. However, when ZFPM2R698Q was co-transfected with GATA4, BNP promoter activity increased significantly, whereas co-transfection with ZFPM2R736L and GATA4 did not significantly increase BNP promoter activity. This suggests that the R698Q mutation may affect the ability of ZFPM2 to bind GATA4.
圆锥动脉干心脏缺陷(CTDs)是一组涉及流出道异常和心脏动脉极的心脏畸形。最近的报告已经在人类和动物模型中确定了一些与CTDs相关的基因突变。ZFPM2作为一种与GATA4相互作用的转录辅因子,在心脏发育中发挥作用。由于在基因敲除小鼠模型中发现ZFPM2对心脏发育很重要,我们对528例CTD患者进行了ZFPM2突变筛查。我们鉴定出6种罕见的非同义ZFPM2变体,其中5种变体(R698Q、R736L、E1005K、T32A和I488V)在东亚人中的报道尚属首次。蛋白质免疫印迹显示,野生型ZFPM2、ZFPM2R698Q或ZFPM2R736L的蛋白质表达没有显著差异。双荧光素酶报告基因检测表明,ZFPM2突变体R698Q和R736L均降低了GATA4介导的转录。然而,当ZFPM2R698Q与GATA4共转染时,BNP启动子活性显著增加,而ZFPM2R736L与GATA4共转染时,BNP启动子活性没有显著增加。这表明R698Q突变可能影响ZFPM2与GATA4结合的能力。