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人类颅面发育过程中转录组动态的综合分析确定了候选疾病基因。

Integrative analysis of transcriptome dynamics during human craniofacial development identifies candidate disease genes.

机构信息

Graduate Program in Genetics and Developmental Biology, UConn Health, Farmington, CT, 06030, USA.

University of Connecticut School of Medicine, Department of Genetics and Genome Sciences, Farmington, CT, 06030, USA.

出版信息

Nat Commun. 2023 Aug 2;14(1):4623. doi: 10.1038/s41467-023-40363-1.

Abstract

Craniofacial disorders arise in early pregnancy and are one of the most common congenital defects. To fully understand how craniofacial disorders arise, it is essential to characterize gene expression during the patterning of the craniofacial region. To address this, we performed bulk and single-cell RNA-seq on human craniofacial tissue from 4-8 weeks post conception. Comparisons to dozens of other human tissues revealed 239 genes most strongly expressed during craniofacial development. Craniofacial-biased developmental enhancers were enriched +/- 400 kb surrounding these craniofacial-biased genes. Gene co-expression analysis revealed that regulatory hubs are enriched for known disease causing genes and are resistant to mutation in the normal healthy population. Combining transcriptomic and epigenomic data we identified 539 genes likely to contribute to craniofacial disorders. While most have not been previously implicated in craniofacial disorders, we demonstrate this set of genes has increased levels of de novo mutations in orofacial clefting patients warranting further study.

摘要

颅面畸形发生在妊娠早期,是最常见的先天性缺陷之一。为了充分了解颅面畸形的发生机制,必须描述颅面区域形态发生过程中的基因表达。为此,我们对 4-8 周大的人类颅面组织进行了批量和单细胞 RNA-seq 分析。与数十种其他人类组织进行比较后,发现了在颅面发育过程中表达最强的 239 个基因。在这些颅面偏倚基因的周围,正负 400kb 处富集了颅面偏倚发育增强子。基因共表达分析表明,调控枢纽富含已知的致病基因,并且在正常健康人群中不易发生突变。我们结合转录组和表观基因组数据,鉴定出了 539 个可能导致颅面疾病的基因。虽然大多数基因以前与颅面疾病无关,但我们证明这组基因在口腔颌面裂患者中存在更高水平的新生突变,值得进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24cd/10397224/4ce3586579df/41467_2023_40363_Fig1_HTML.jpg

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