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在早期小鼠心脏发育中 Tbx20 和 Tbx3 之间缺乏遗传相互作用。

Lack of genetic interaction between Tbx20 and Tbx3 in early mouse heart development.

机构信息

Department of Genetics and Development, Columbia University Medical Center, New York, New York, United States of America.

出版信息

PLoS One. 2013 Jul 25;8(7):e70149. doi: 10.1371/journal.pone.0070149. Print 2013.

Abstract

Members of the T-box family of transcription factors are important regulators orchestrating the complex regionalization of the developing mammalian heart. Individual mutations in Tbx20 and Tbx3 cause distinct congenital heart abnormalities in the mouse: Tbx20 mutations result in failure of heart looping, developmental arrest and lack of chamber differentiation, while hearts of Tbx3 mutants progress further, loop normally but show atrioventricular convergence and outflow tract defects. The two genes have overlapping areas of expression in the atrioventricular canal and outflow tract of the heart but their potential genetic interaction has not been previously investigated. In this study we produced compound mutants to investigate potential genetic interactions at the earliest stages of heart development. We find that Tbx20; Tbx3 double heterozygous mice are viable and fertile with no apparent abnormalities, while double homozygous mutants are embryonic lethal by midgestation. Double homozygous mutant embryos display abnormal cardiac morphogenesis, lack of heart looping, expression patterns of cardiac genes and time of death that are indistinguishable from Tbx20 homozygous mutants. Prior to death, the double homozygotes show an overall developmental delay similar to Tbx3 homozygous mutants. Thus the effects of Tbx20 are epistatic to Tbx3 in the heart but Tbx3 is epistatic to Tbx20 with respect to developmental delay.

摘要

T 盒转录因子家族的成员是协调哺乳动物心脏复杂区域化的重要调节因子。Tbx20 和 Tbx3 中的单个突变会导致小鼠出现不同的先天性心脏异常:Tbx20 突变导致心脏环化失败、发育停滞和腔室分化缺乏,而 Tbx3 突变体的心脏进一步发育,正常环化,但出现房室连接和流出道缺陷。这两个基因在心脏房室管和流出道中有重叠的表达区域,但它们的潜在遗传相互作用以前没有被研究过。在这项研究中,我们产生了复合突变体,以研究心脏发育早期潜在的遗传相互作用。我们发现 Tbx20;Tbx3 双杂合子小鼠具有活力和生育能力,没有明显异常,而双纯合子突变体在中期妊娠时胚胎致死。双纯合子突变体胚胎表现出异常的心脏形态发生,缺乏心脏环化、心脏基因的表达模式和死亡时间,与 Tbx20 纯合子突变体无法区分。在死亡之前,双纯合子表现出与 Tbx3 纯合子突变体相似的整体发育延迟。因此,Tbx20 对心脏中的 Tbx3 具有上位性,但 Tbx3 对发育延迟具有上位性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4915/3723716/61b7785afbca/pone.0070149.g001.jpg

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