Translational Medicine, The Hospital for Sick Children, Toronto, ON M5G0A4, Canada.
Department of Endocrinology, National Health Committee Key Laboratory of Endocrinology, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100730, China.
Biol Open. 2023 Aug 15;12(8). doi: 10.1242/bio.059894. Epub 2023 Jul 28.
G9a, also known as EHMT2, is essential for embryogenesis and has specific functions in multiple developmental processes. G9a inactivation affects development of the nervous system, which is formed with contribution of descendants of progenitor cells expressing the transcription factor Isl1. However, the function of G9a in Isl1-expressing progenitors is unknown. Here, we show that G9a is required for proper development of multiple structures formed with contribution of Isl1-expressing progenitors. A Cre-dependent GFP reporter revealed that the recombinase activity of the Isl1-Cre used in this study to inactivate G9a was reduced to a subset of Isl1-expressing progenitor cells. G9a mutants reached endpoint by 7 weeks of age with cardiac hypertrophy, hydrocephalus, underdeveloped cerebellum and hind limb paralysis, modeling aspects of Dandy-Walker complex. Moreover, neuroepithelium of the lateral ventricle derived from Isl1-expressing progenitors was thinner and disorganized, potentially compromising cerebrospinal fluid dynamics in G9a mutants. Micro-computed tomography after iodine staining revealed increased volume of the heart, eye lens and brain structures in G9a mutant fetuses. Thus, altered development of descendants of the second heart field and the neural crest could contribute to multicomponent malformation like Dandy-Walker.
G9a,也被称为 EHMT2,对胚胎发生是必需的,并且在多个发育过程中具有特定的功能。G9a 的失活会影响神经系统的发育,而神经系统的形成是由表达转录因子 Isl1 的祖细胞后代贡献的。然而,G9a 在表达 Isl1 的祖细胞中的功能尚不清楚。在这里,我们表明 G9a 是 Isl1 表达祖细胞参与形成的多个结构的正常发育所必需的。一个依赖 Cre 的 GFP 报告基因揭示了本研究中用于失活 G9a 的 Isl1-Cre 重组酶的活性减少到 Isl1 表达祖细胞的一个亚群。G9a 突变体在 7 周龄时达到终点,表现为心脏肥大、脑积水、小脑和后肢瘫痪,模拟了 Dandy-Walker 综合征的某些方面。此外,来自表达 Isl1 的祖细胞的侧脑室神经上皮变薄且紊乱,可能会影响 G9a 突变体中的脑脊液动力学。碘染色后的微计算机断层扫描显示 G9a 突变体胎儿的心脏、晶状体和脑结构体积增加。因此,第二心脏场和神经嵴后代的发育改变可能导致像 Dandy-Walker 综合征这样的多成分畸形。