Institue of Evolution, University of Haifa, Haifa 3498838, Israel.
Bioinformatics Core Unit, University of Haifa, Haifa 3498838, Israel.
Sci Rep. 2016 Dec 9;6:38624. doi: 10.1038/srep38624.
The subterranean blind mole rat, Spalax, experiences acute hypoxia-reoxygenation cycles in its natural subterranean habitat. At the cellular level, these conditions are known to promote genomic instability, which underlies both cancer and aging. However, Spalax is a long-lived animal and is resistant to both spontaneous and induced cancers. To study this apparent paradox we utilized a computational procedure that allows detecting differences in transcript abundance between Spalax and the closely related above-ground Rattus norvegicus in individuals of different ages. Functional enrichment analysis showed that Spalax whole brain tissues maintain significantly higher normoxic mRNA levels of genes associated with DNA damage repair and DNA metabolism, yet keep significantly lower mRNA levels of genes involved in bioenergetics. Many of the genes that showed higher transcript abundance in Spalax are involved in DNA repair and metabolic pathways that, in other species, were shown to be downregulated under hypoxia, yet are required for overcoming replication- and oxidative-stress during the subsequent reoxygenation. We suggest that these differentially expressed genes may prevent the accumulation of DNA damage in mitotic and post-mitotic cells and defective resumption of replication in mitotic cells, thus maintaining genome integrity as an adaptation to acute hypoxia-reoxygenation cycles.
地下盲鼹鼠 Spalax 在其天然的地下栖息地经历急性缺氧-复氧循环。在细胞水平上,这些条件已知会促进基因组不稳定性,这是癌症和衰老的基础。然而,Spalax 是一种长寿动物,对自发和诱导的癌症都有抵抗力。为了研究这种明显的悖论,我们利用了一种计算程序,可以检测不同年龄个体中 Spalax 和密切相关的地上 Rattus norvegicus 之间转录丰度的差异。功能富集分析表明,Spalax 全脑组织在正常氧条件下维持着与 DNA 损伤修复和 DNA 代谢相关的基因的显著更高的 mRNA 水平,但涉及生物能量学的基因的 mRNA 水平显著更低。在 Spalax 中表现出更高转录丰度的许多基因参与 DNA 修复和代谢途径,在其他物种中,这些途径在缺氧下被下调,但在随后的复氧过程中,需要这些途径来克服复制和氧化应激。我们认为,这些差异表达的基因可能防止有丝分裂和有丝分裂后细胞中 DNA 损伤的积累,以及有丝分裂细胞中复制的缺陷恢复,从而维持基因组完整性作为对急性缺氧-复氧循环的适应。
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