多梳抑制复合体2在特定下丘脑神经元亚型产生中的选择性要求

Behzad Yaghmaeian Salmani, Brad Balderson, S. Bauer, Helen Ekman, Annika Starkenberg, T. Perlmann, M. Piper, M. Bodén, S. Thor
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引用次数: 1

摘要

下丘脑表现出惊人的细胞多样性,主要是在胚胎发生期间通过几种信号通路和一系列转录因子的相互作用而建立的。然而,表观遗传线索对下丘脑发育的影响尚不清楚。我们在发育中的小鼠下丘脑中突变了多梳抑制复合体2基因Eed,导致H3K27me3缺失,H3K27me3是一种基本的表观遗传抑制标记。这引发了后表达调控因子(如Hox同源基因)的异位表达,细胞周期抑制剂的上调和增殖减少。令人惊讶的是,尽管有这些影响,单细胞转录组学分析显示,大多数神经元亚型仍然在Eed突变体中产生。然而,我们观察到谷氨酸能/氨基丁酸能双阳性细胞增加,多巴胺、下丘脑分泌素和Tac2-Pax6神经元丢失/减少。这些发现表明,下丘脑基因调控流的许多方面可以在没有关键的H3K27me3表观遗传抑制因子标记的情况下进行,但指出了特定神经元亚型对被破坏的表观基因组景观的独特敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selective requirement for polycomb repressor complex 2 in the generation of specific hypothalamic neuronal subtypes
ABSTRACT The hypothalamus displays staggering cellular diversity, chiefly established during embryogenesis by the interplay of several signalling pathways and a battery of transcription factors. However, the contribution of epigenetic cues to hypothalamus development remains unclear. We mutated the polycomb repressor complex 2 gene Eed in the developing mouse hypothalamus, which resulted in the loss of H3K27me3, a fundamental epigenetic repressor mark. This triggered ectopic expression of posteriorly expressed regulators (e.g. Hox homeotic genes), upregulation of cell cycle inhibitors and reduced proliferation. Surprisingly, despite these effects, single cell transcriptomic analysis revealed that most neuronal subtypes were still generated in Eed mutants. However, we observed an increase in glutamatergic/GABAergic double-positive cells, as well as loss/reduction of dopamine, hypocretin and Tac2-Pax6 neurons. These findings indicate that many aspects of the hypothalamic gene regulatory flow can proceed without the key H3K27me3 epigenetic repressor mark, but points to a unique sensitivity of particular neuronal subtypes to a disrupted epigenomic landscape.
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