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一项关于慢性低剂量辐照和模拟微重力对小鼠视网膜反应的多组学纵向研究。

A multi-omics longitudinal study of the murine retinal response to chronic low-dose irradiation and simulated microgravity.

机构信息

Scimentis LLC, Statham, GA, 30666, USA.

Science Applications International Corporation (SAIC), Reston, VA, 20190, USA.

出版信息

Sci Rep. 2022 Oct 7;12(1):16825. doi: 10.1038/s41598-022-19360-9.

Abstract

The space environment includes unique hazards like radiation and microgravity which can adversely affect biological systems. We assessed a multi-omics NASA GeneLab dataset where mice were hindlimb unloaded and/or gamma irradiated for 21 days followed by retinal analysis at 7 days, 1 month or 4 months post-exposure. We compared time-matched epigenomic and transcriptomic retinal profiles resulting in a total of 4178 differentially methylated loci or regions, and 457 differentially expressed genes. Highest correlation in methylation difference was seen across different conditions at the same time point. Nucleotide metabolism biological processes were enriched in all groups with activation at 1 month and suppression at 7 days and 4 months. Genes and processes related to Notch and Wnt signaling showed alterations 4 months post-exposure. A total of 23 genes showed significant changes in methylation and expression compared to unexposed controls, including genes involved in retinal function and inflammatory response. This multi-omics analysis interrogates the epigenomic and transcriptomic impacts of radiation and hindlimb unloading on the retina in isolation and in combination and highlights important molecular mechanisms at different post-exposure stages.

摘要

太空环境包含独特的危害因素,如辐射和微重力,这些因素可能会对生物系统产生不利影响。我们评估了美国宇航局 GeneLab 的一个多组学数据集,该数据集显示,小鼠在接受 21 天的后肢去负荷和/或伽马辐射后,在 7 天、1 个月或 4 个月后进行视网膜分析。我们比较了时间匹配的表观基因组和转录组视网膜图谱,结果总共发现了 4178 个差异甲基化位点或区域,以及 457 个差异表达基因。在同一时间点,不同条件下的甲基化差异相关性最高。在所有组中,核苷酸代谢生物过程都得到了富集,在 1 个月时激活,在 7 天和 4 个月时抑制。与 Notch 和 Wnt 信号相关的基因和过程在暴露后 4 个月时发生了改变。与未暴露对照组相比,共有 23 个基因的甲基化和表达发生了显著变化,其中包括与视网膜功能和炎症反应相关的基因。这项多组学分析研究了辐射和后肢去负荷对视网膜的单独和联合的表观基因组和转录组影响,并强调了不同暴露后阶段的重要分子机制。

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