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Comparative time-series multi-omics analyses suggest H1.2 involvement in anoxic adaptation and cancer resistance

Juan Du, Weiqiang Liu, Meng Li, Zihao Li, Xuanjing Li, Yichen Dai, Gaoming Liu, Xiao Wang, Pingfen Zhu, Vadim N. Gladyshev, Xuming Zhou

PLoS Biology · 2024 · ▲ 3 citations

Abstract

The naked mole rat (NMR), Heterocephalus glaber, is known as the longest-lived rodent and is extraordinarily resistant to hypoxia and cancer. Here, both NMR embryonic fibroblasts (NEFs) and their mouse counterparts (MEFs) were subjected to anoxic conditions (0% O2, 5% CO2). A combination of comparative transcriptomics and proteomics was then employed to identify differentially expressed genes (DEGs). Notably, we observed distinct levels of histone H1.2 (encoded by HIST1H1C) accumulation between NEFs and MEFs. Subsequent mechanistic analyses showed that higher H1.2 expression in NEFs was associated with the lower expression of its inhibitor, PARP1. Additionally, we discovered that H1.2 can directly interact with HIF-1α PAS domains, thereby promoting the expression of HIF-1α through facilitating the dimerization with HIF-1β. The overexpression of H1.2 was also found to trigger autophagy(definition) and to suppress the migration of cancer cells, as well as the formation of xenograft tumors, via the NRF2/P62 signaling pathway. Moreover, an engineered H1.2 knock-in mouse model exhibited significantly extended survival in hypoxic conditions (4% O2) and showed a reduced rate of tumor formation. Collectively, our results indicate a potential mechanistic link between H1.2 and the dual phenomena of anoxic adaptation and cancer resistance.

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OpenAlex
DOI
10.1371/journal.pbio.3002778
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2026-07-15 MST

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APA
Du, J., Liu, W., Li, M., Li, Z., Li, X., Dai, Y., Liu, G., Wang, X., Zhu, P., Gladyshev, V.N., &amp; Zhou, X. (2024). Comparative time-series multi-omics analyses suggest H1.2 involvement in anoxic adaptation and cancer resistance. <em>PLoS Biology</em>. https://doi.org/10.1371/journal.pbio.3002778
Vancouver
Du J, Liu W, Li M, Li Z, Li X, Dai Y, et al. Comparative time-series multi-omics analyses suggest H1.2 involvement in anoxic adaptation and cancer resistance. PLoS Biology. 2024. doi:10.1371/journal.pbio.3002778.
BibTeX
@article{juan2024Compar, title = {Comparative time-series multi-omics analyses suggest H1.2 involvement in anoxic adaptation and cancer resistance}, author = {Juan Du and Weiqiang Liu and Meng Li and Zihao Li and Xuanjing Li and Yichen Dai and Gaoming Liu and Xiao Wang and Pingfen Zhu and Vadim N. Gladyshev and Xuming Zhou}, journal = {PLoS Biology}, year = {2024}, doi = {10.1371/journal.pbio.3002778}, }

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