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FOXO3 长寿相互作用组在 6 号染色体上。

FOXO3 longevity interactome on chromosome 6.

机构信息

Department of Research, Genetics Laboratory, Honolulu Heart Program/Honolulu-Asia Aging Study (HAAS), Kuakini Medical Center, Honolulu, Hawaii.

John A. Burns School of Medicine, University of Hawaii Manoa, Honolulu, Hawaii.

出版信息

Aging Cell. 2017 Oct;16(5):1016-1025. doi: 10.1111/acel.12625. Epub 2017 Jul 19.

Abstract

FOXO3 has been implicated in longevity in multiple populations. By DNA sequencing in long-lived individuals, we identified all single nucleotide polymorphisms (SNPs) in FOXO3 and showed 41 were associated with longevity. Thirteen of these had predicted alterations in transcription factor binding sites. Those SNPs appeared to be in physical contact, via RNA polymerase II binding chromatin looping, with sites in the FOXO3 promoter, and likely function together as a cis-regulatory unit. The SNPs exhibited a high degree of LD in the Asian population, in which they define a specific longevity haplotype that is relatively common. The haplotype was less frequent in whites and virtually nonexistent in Africans. We identified distant contact points between FOXO3 and 46 neighboring genes, through long-range physical contacts via CCCTC-binding factor zinc finger protein (CTCF) binding sites, over a 7.3 Mb distance on chromosome 6q21. When activated by cellular stress, we visualized movement of FOXO3 toward neighboring genes. FOXO3 resides at the center of this early-replicating and highly conserved syntenic region of chromosome 6. Thus, in addition to its role as a transcription factor regulating gene expression genomewide, FOXO3 may function at the genomic level to help regulate neighboring genes by virtue of its central location in chromatin conformation via topologically associated domains. We believe that the FOXO3 'interactome' on chromosome 6 is a chromatin domain that defines an aging hub. A more thorough understanding of the functions of these neighboring genes may help elucidate the mechanisms through which FOXO3 variants promote longevity and healthy aging.

摘要

FOXO3 已被证实与多个群体的长寿有关。通过对长寿个体的 DNA 测序,我们鉴定了 FOXO3 中的所有单核苷酸多态性(SNP),并发现其中 41 个与长寿相关。其中 13 个 SNP 预测会改变转录因子结合位点。这些 SNP 似乎通过 RNA 聚合酶 II 结合染色质环化,与 FOXO3 启动子中的位点发生物理接触,并且可能作为顺式调控单元共同发挥作用。这些 SNP 在亚洲人群中具有高度的连锁不平衡,在该人群中,它们定义了一种特定的长寿单倍型,相对常见。在白种人群中,这种单倍型的频率较低,在非洲人群中则几乎不存在。我们通过 CTCF 结合位点的长距离物理接触,在 6q21 染色体上的 7.3Mb 距离内,确定了 FOXO3 与 46 个相邻基因之间的远距离接触点。当细胞受到应激时,我们观察到 FOXO3 向相邻基因移动。FOXO3 位于染色体 6 上这个早期复制和高度保守的同线区域的中心。因此,除了作为转录因子调节全基因组基因表达外,FOXO3 还可以通过拓扑关联结构域,在染色质构象中处于中心位置,从而在基因组水平上发挥作用,帮助调节相邻基因。我们认为,染色体 6 上的 FOXO3“相互作用组”是一个染色质结构域,定义了一个衰老中心。更全面地了解这些相邻基因的功能,可能有助于阐明 FOXO3 变体促进长寿和健康衰老的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f788/5595686/d1e49610e3cc/ACEL-16-1016-g001.jpg

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