Herman B Wells Center for Pediatric Research, Department of Pediatrics, Anatomy, Biochemistry, and Medical and Molecular Genetics, Indiana University School of Medicine, Indianapolis, Indiana, USA.
Department for BioMedical Research (DBMR), University of Bern, Bern, Switzerland.
Dev Dyn. 2024 Feb;253(2):215-232. doi: 10.1002/dvdy.646. Epub 2023 Aug 8.
The bHLH transcription factor HAND2 plays important roles in the development of the embryonic heart, face, limbs, and sympathetic and enteric nervous systems. To define how and when HAND2 regulates these developmental systems, requires understanding the transcriptional regulation of Hand2.
Remarkably, Hand2 is flanked by an extensive upstream gene desert containing a potentially diverse enhancer landscape. Here, we screened the regulatory interval 200 kb proximal to Hand2 for putative enhancers using evolutionary conservation and histone marks in Hand2-expressing tissues. H3K27ac signatures across embryonic tissues pointed to only two putative enhancer regions showing deep sequence conservation. Assessment of the transcriptional enhancer potential of these elements using transgenic reporter lines uncovered distinct in vivo enhancer activities in embryonic stomach and limb mesenchyme, respectively. Activity of the identified stomach enhancer was restricted to the developing antrum and showed expression within the smooth muscle and enteric neurons. Surprisingly, the activity pattern of the limb enhancer did not overlap Hand2 mRNA but consistently yielded a defined subectodermal anterior expression pattern within multiple transgenic lines.
Together, these results start to uncover the diverse regulatory potential inherent to the Hand2 upstream regulatory interval.
bHLH 转录因子 HAND2 在胚胎心脏、面部、四肢以及交感和肠神经系统的发育中发挥重要作用。要了解 HAND2 如何以及何时调节这些发育系统,就需要了解 Hand2 的转录调控。
值得注意的是,Hand2 被一个广泛的上游基因荒漠所包围,其中包含一个潜在多样化的增强子景观。在这里,我们使用进化保守性和 Hand2 表达组织中的组蛋白标记,在 Hand2 近端 200kb 的调控间隔内筛选潜在的增强子。胚胎组织中的 H3K27ac 特征仅指向两个具有深度序列保守性的潜在增强子区域。使用转基因报告线评估这些元件的转录增强子潜力,分别揭示了胚胎胃和肢体间充质中独特的体内增强子活性。鉴定的胃增强子的活性仅限于发育中的窦,在平滑肌和肠神经元中表达。令人惊讶的是,肢体增强子的活性模式与 Hand2 mRNA 并不重叠,但在多个转基因系中始终在一个特定的亚外胚层前表达模式。
这些结果开始揭示 Hand2 上游调控间隔所固有的多样化调控潜力。