Laboratory of Genome Informatics, Graduate School of Integrated Sciences for Life, Hiroshima University, 3-10-23 Kagamiyama, Higashi-Hiroshima City 739-0046, Japan.
Laboratory of BioDX, Genome Editing Innovation Center, Hiroshima University, 3-10-23 Kagamiyama, Higashi-Hiroshima City 739-0046, Japan.
Int J Mol Sci. 2023 Aug 30;24(17):13444. doi: 10.3390/ijms241713444.
Climate change has significantly increased the frequency of our exposure to heat, adversely affecting human health and industries. Heat stress is an environmental stress defined as the exposure of organisms and cells to abnormally high temperatures. To comprehensively explain the mechanisms underlying an organism's response to heat stress, it is essential to investigate and analyze genes that have been under-represented or less well-known in previous studies. In this study, we analyzed heat stress-responsive genes using a meta-analysis of numerous gene expression datasets from the public database. We obtained 322 human and 242 mouse pairs as the heat exposure and control data. The meta-analysis of these data identified 76 upregulated and 37 downregulated genes common to both humans and mice. We performed enrichment, protein-protein interaction network, and transcription factor target gene analyses for these genes. Furthermore, we conducted an integrated analysis of these genes using publicly available chromatin immunoprecipitation sequencing (ChIP-seq) data for HSF1, HSF2, and PPARGC1A (PGC-1α) as well as gene2pubmed data from the existing literature. The results identified previously overlooked genes, such as , , and , as commonly upregulated genes. Further functional analysis of these genes can contribute to coping with climate change and potentially lead to technological advancements.
气候变化显著增加了我们暴露于高温环境中的频率,对人类健康和各行业都产生了不利影响。热应激是一种环境应激,定义为生物体和细胞暴露于异常高温下。为了全面解释生物体对热应激的反应机制,有必要研究和分析以前研究中代表性不足或不太知名的基因。在这项研究中,我们使用公共数据库中的大量基因表达数据集的荟萃分析来分析热应激反应基因。我们获得了 322 对人类和 242 对小鼠作为热暴露和对照数据。对这些数据的荟萃分析确定了 76 个上调和 37 个下调的基因在人类和小鼠中都存在。我们对这些基因进行了富集、蛋白质-蛋白质相互作用网络和转录因子靶基因分析。此外,我们还使用公共的染色质免疫沉淀测序 (ChIP-seq) 数据对 HSF1、HSF2 和 PPARGC1A(PGC-1α)以及现有文献中的基因 2pubmed 数据进行了这些基因的综合分析。结果确定了以前被忽视的基因,如 、 和 ,作为常见的上调基因。对这些基因的进一步功能分析有助于应对气候变化,并可能带来技术进步。