Division of Developmental Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, 45229, USA.
Division of Nephrology and Hypertension, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, 45229, USA.
Sci Rep. 2018 Apr 20;8(1):6306. doi: 10.1038/s41598-018-24782-5.
Hox genes are important regulators of development. The 39 mammalian Hox genes have considerable functional overlap, greatly confounding their study. In this report, we generated mice with multiple combinations of paralogous and flanking Abd-B Hox gene mutations to investigate functional redundancies in kidney development. The resulting mice developed a number of kidney abnormalities, including hypoplasia, agenesis, and severe cysts, with distinct Hox functions observed in early metanephric kidney formation and nephron progenitor maintenance. Most surprising, however, was that extensive removal of Hox shared function in these kidneys resulted in cellular level lineage infidelity. Strikingly, mutant nephron tubules consisted of intermixed cells with proximal tubule, loop of Henle, and collecting duct identities, with some single cells expressing markers associated with more than one nephron segment. These results indicate that Hox genes are required for proper lineage selection/maintenance and full repression of genes involved in cell fate restriction in the developing kidney.
Hox 基因是发育的重要调节因子。39 种哺乳动物 Hox 基因具有相当大的功能重叠,这极大地混淆了它们的研究。在本报告中,我们生成了具有多种同源和侧翼 Abd-B Hox 基因突变组合的小鼠,以研究肾脏发育中的功能冗余。由此产生的小鼠出现了多种肾脏异常,包括发育不良、缺失和严重的囊肿,在早期后肾形成和肾祖细胞维持中观察到明显的 Hox 功能。然而,最令人惊讶的是,这些肾脏中 Hox 共享功能的广泛缺失导致了细胞水平谱系失实。引人注目的是,突变体肾小管由具有近端小管、亨利氏袢和收集管特征的混合细胞组成,一些单个细胞表达与一个以上肾单位段相关的标记物。这些结果表明,Hox 基因对于正确的谱系选择/维持以及完全抑制发育肾脏中参与细胞命运限制的基因是必需的。