| Literature DB >> 29706346 |
Xiao-Feng Chen1, Dong-Li Zhu1, Man Yang1, Wei-Xin Hu1, Yuan-Yuan Duan1, Bing-Jie Lu1, Yu Rong1, Shan-Shan Dong1, Ruo-Han Hao1, Jia-Bin Chen1, Yi-Xiao Chen1, Shi Yao1, Hlaing Nwe Thynn1, Yan Guo2, Tie-Lin Yang3.
Abstract
Genome-wide association studies (GWASs) have reproducibly associated variants within intergenic regions of 1p36.12 locus with osteoporosis, but the functional roles underlying these noncoding variants are unknown. Through an integrative functional genomic and epigenomic analyses, we prioritized rs6426749 as a potential causal SNP for osteoporosis at 1p36.12. Dual-luciferase assay and CRISPR/Cas9 experiments demonstrate that rs6426749 acts as a distal allele-specific enhancer regulating expression of a lncRNA (LINC00339) (∼360 kb) via long-range chromatin loop formation and that this loop is mediated by CTCF occupied near rs6426749 and LINC00339 promoter region. Specifically, rs6426749-G allele can bind transcription factor TFAP2A, which efficiently elevates the enhancer activity and increases LINC00339 expression. Downregulation of LINC00339 significantly increases the expression of CDC42 in osteoblast cells, which is a pivotal regulator involved in bone metabolism. Our study provides mechanistic insight into how a noncoding SNP affects osteoporosis by long-range interaction, a finding that could indicate promising therapeutic targets for osteoporosis.Entities:
Keywords: 1p36.12; LINC00339; TFAP2A; chromatin interaction; eQTL; enhancer; long-range; loop; osteoporosis; rs6426749
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Year: 2018 PMID: 29706346 PMCID: PMC5986728 DOI: 10.1016/j.ajhg.2018.03.001
Source DB: PubMed Journal: Am J Hum Genet ISSN: 0002-9297 Impact factor: 11.025