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人类胚胎干细胞衍生的下丘脑神经元分化的顺式调控结构有助于相关复杂性状变异到基因的映射。

Cis-regulatory architecture of human ESC-derived hypothalamic neuron differentiation aids in variant-to-gene mapping of relevant complex traits.

机构信息

Center for Spatial and Functional Genomics, Children's Hospital of Philadelphia, Philadelphia, PA, 19104, USA.

Department of Pathology, Naomi Berrie Diabetes Center, Columbia Stem Cell Initiative, Columbia University Vagelos College of Physicians and Surgeons, New York, NY, USA.

出版信息

Nat Commun. 2021 Nov 19;12(1):6749. doi: 10.1038/s41467-021-27001-4.

Abstract

The hypothalamus regulates metabolic homeostasis by influencing behavior and endocrine systems. Given its role governing key traits, such as body weight and reproductive timing, understanding the genetic regulation of hypothalamic development and function could yield insights into disease pathogenesis. However, given its inaccessibility, studying human hypothalamic gene regulation has proven challenging. To address this gap, we generate a high-resolution chromatin architecture atlas of an established embryonic stem cell derived hypothalamic-like neuron model across three stages of in vitro differentiation. We profile accessible chromatin and identify physical contacts between gene promoters and putative cis-regulatory elements to characterize global regulatory landscape changes during hypothalamic differentiation. Next, we integrate these data with GWAS loci for various complex traits, identifying multiple candidate effector genes. Our results reveal common target genes for these traits, potentially affecting core developmental pathways. Our atlas will enable future efforts to determine hypothalamic mechanisms influencing disease susceptibility.

摘要

下丘脑通过影响行为和内分泌系统来调节代谢稳态。鉴于其在控制体重和生殖时机等关键特征方面的作用,了解下丘脑发育和功能的遗传调控机制可能有助于深入了解疾病的发病机制。然而,由于下丘脑的不可及性,研究人类下丘脑的基因调控一直具有挑战性。为了解决这一差距,我们生成了一个高分辨率的染色质结构图谱,该图谱涵盖了三个体外分化阶段的已建立的胚胎干细胞衍生的下丘脑样神经元模型。我们对可及染色质进行了分析,并确定了基因启动子和假定顺式调控元件之间的物理接触,以描述下丘脑分化过程中全局调控景观的变化。接下来,我们将这些数据与各种复杂性状的 GWAS 基因座进行了整合,确定了多个候选效应基因。我们的研究结果揭示了这些性状的常见靶基因,可能影响核心发育途径。我们的图谱将为未来确定影响疾病易感性的下丘脑机制的研究提供支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bae2/8604959/c5c995e8939e/41467_2021_27001_Fig1_HTML.jpg

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