心脏瓣膜和室间隔发育过程中错综复杂的 MIB1-NOTCH-GATA6 相互作用

Rebeca Piñeiro-Sabarís, D. MacGrogan, J. L. de la Pompa
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引用次数: 0

摘要

全基因组关联研究和小鼠实验模型表明,MIB1 和 GATA6 基因与先天性心脏病(CHD)有关。这两个基因物理上的接近性和保守的同源关系表明,它们可能参与了类似的心脏发育过程。杂合子 Gata6 功能缺失突变或人源化 Mib1 突变在 NOTCH1 敏感的遗传背景下会导致双尖瓣主动脉瓣 (BAV) 和膜室间隔缺损 (VSD),这与 MIB1 和 NOTCH1 在同一途径中发挥作用相一致。为了确定 MIB1-NOTCH 和 GATA6 是否在瓣膜和室间隔发育过程中相互作用,我们产生了携带不同 Mib1 错义突变(Mib1K735R 和 Mib1V943F)或无义突变(Mib1R530X)以及 Gata6STOP/+ 杂合子无效突变的复合杂合子小鼠。将 Mib1R530X/+ 或 Mib1K735R/+ 与 Gata6STOP/+ 结合使用不会影响 Gata6STOP/+ 单突变体的表型。相反,将 Mib1V943F/+ 与 Gata6STOP/+ 结合会使 BAV 和 VSD 的发生率降低 50%,这表明 Mib1V943F/+ 对 Gata6STOP/+ 有抑制作用。转录组和功能分析显示,虽然在 Gata6STOP/+ 突变体中 EMT 通路项被耗尽,但引入 Mib1V943F 变体后,该通路项得到了强有力的富集,这与 Mib1V943F/+ 对 Gata6STOP/+ 的表型抑制是一致的。有趣的是,Notch1 和 Gata6 的联合缺失会导致几乎全穿透的 VSD,但不会影响 BAV 表型,这突显了 MIB1、NOTCH 和 GATA6 在瓣膜和室间隔发育中复杂的功能关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intricate MIB1-NOTCH-GATA6 Interactions in Cardiac Valvular and Septal Development
Genome-wide association studies and experimental mouse models implicate the MIB1 and GATA6 genes in congenital heart disease (CHD). Their close physical proximity and conserved synteny suggest that these two genes might be involved in analogous cardiac developmental processes. Heterozygous Gata6 loss-of-function mutations alone or humanized Mib1 mutations in a NOTCH1-sensitized genetic background cause bicuspid aortic valve (BAV) and a membranous ventricular septal defect (VSD), consistent with MIB1 and NOTCH1 functioning in the same pathway. To determine if MIB1-NOTCH and GATA6 interact in valvular and septal development, we generated compound heterozygote mice carrying different Mib1 missense (Mib1K735R and Mib1V943F) or nonsense (Mib1R530X) mutations with the Gata6STOP/+ heterozygous null mutation. Combining Mib1R530X/+ or Mib1K735R/+ with Gata6STOP/+ does not affect Gata6STOP/+ single mutant phenotypes. In contrast, combining Mib1V943F/+ with Gata6STOP/+ decreases the incidence of BAV and VSD by 50%, suggesting a suppressive effect of Mib1V943F/+ on Gata6STOP/+. Transcriptomic and functional analyses revealed that while the EMT pathway term is depleted in the Gata6STOP/+ mutant, introducing the Mib1V943F variant robustly enriches this term, consistent with the Mib1V943F/+ phenotypic suppression of Gata6STOP/+. Interestingly, combined Notch1 and Gata6 insufficiency led to a nearly fully penetrant VSD but did not affect the BAV phenotype, underscoring the complex functional relationship between MIB1, NOTCH, and GATA6 in valvular and septal development.
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