综合高通量增强子调查和功能验证揭示了YY2凝结的调控轴,该轴赋予骨质疏松症风险。

IF 11.1 Q1 CELL BIOLOGY Cell genomics Pub Date : 2024-03-13 Epub Date: 2024-02-08 DOI:10.1016/j.xgen.2024.100501
Xiao-Feng Chen, Yuan-Yuan Duan, Ying-Ying Jia, Qian-Hua Dong, Wei Shi, Yan Zhang, Shan-Shan Dong, Meng Li, Zhongbo Liu, Fei Chen, Xiao-Ting Huang, Ruo-Han Hao, Dong-Li Zhu, Rui-Hua Jing, Yan Guo, Tie-Lin Yang
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引用次数: 0

摘要

骨质疏松症风险基因座上染色质组织的确切作用在很大程度上仍然难以捉摸。在这里,我们将染色质相互作用构象(Hi-C)分析与自转录活性调控区测序(STARR-seq)相结合,对优先考虑的骨质疏松症相关单核苷酸多态性(SNPs)的增强子活性进行了鉴定。我们发现了 319 个具有偏向等位基因增强子活性效应的 SNPs(baaSNPs),这些 SNPs 通过染色质相互作用与 146 个位点上的数百个候选靶基因相关联。功能特性分析表明,baaSNPs 具有活跃的表观遗传富集作用,其染色质相互作用基因普遍具有骨质疏松症相关的调控作用。进一步的主题富集和网络映射确定了几个控制骨质疏松症与 baaSNPs 结合的假定关键转录因子 (TF)。具体来说,我们选择了一个排名最高的 TF,并破译了一个内含子 baaSNP(rs11202530)可等位基因优先与 YY2 结合,通过染色质相互作用增强 PAPSS2 的表达,并促进成骨细胞分化。我们的研究结果强调了TF介导的增强子-启动子接触在骨质疏松症中的作用,这可能有助于更好地理解骨质疏松症风险位点背后错综复杂的分子调控机制。
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Integrative high-throughput enhancer surveying and functional verification divulges a YY2-condensed regulatory axis conferring risk for osteoporosis.

The precise roles of chromatin organization at osteoporosis risk loci remain largely elusive. Here, we combined chromatin interaction conformation (Hi-C) profiling and self-transcribing active regulatory region sequencing (STARR-seq) to qualify enhancer activities of prioritized osteoporosis-associated single-nucleotide polymorphisms (SNPs). We identified 319 SNPs with biased allelic enhancer activity effect (baaSNPs) that linked to hundreds of candidate target genes through chromatin interactions across 146 loci. Functional characterizations revealed active epigenetic enrichment for baaSNPs and prevailing osteoporosis-relevant regulatory roles for their chromatin interaction genes. Further motif enrichment and network mapping prioritized several putative, key transcription factors (TFs) controlling osteoporosis binding to baaSNPs. Specifically, we selected one top-ranked TF and deciphered that an intronic baaSNP (rs11202530) could allele-preferentially bind to YY2 to augment PAPSS2 expression through chromatin interactions and promote osteoblast differentiation. Our results underline the roles of TF-mediated enhancer-promoter contacts for osteoporosis, which may help to better understand the intricate molecular regulatory mechanisms underlying osteoporosis risk loci.

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