Heterocephalus glaber or naked mole-rats (NMRs)—a mammal species native to Eastern Africa—are the longest-living rodents with an exceptionally long lifespan of over 37 years with a unique ability to delay aging and resist age-related diseases, such as cancer. For these reasons, NMRs have attracted a lot of attention, with researchers hoping to unravel the mechanisms contributing to their longevity. Previous studies have explored the role of DNA repair mechanisms, protein stability, and translation accuracy (precise conversion of RNA to proteins) in this regard, but the molecular mechanisms/factors behind their aging-resistance remain largely unclear. Moreover, the contribution of cellular senescence to their aging resistance is poorly understood.
Paper: Kawamura Y, Oka K, Semba T, et al. Cellular senescence induction leads to progressive cell death via the INK4a‐RB pathway in naked mole‐rats. EMBO J. 2023;42(16):e111133. doi: 10.15252/embj.2022111133
Source: Kumamoto University
About Professor Kyoko Miura from Kumamoto University
Professor Kyoko Miura is a faculty member at the Department of Aging and Longevity Research, Kumamoto University, Kumamoto, Japan. Her research primarily focuses on elucidating the mechanisms underlying resistance to cancer and aging in NMRs. Along with her team, Prof. Miura aims to identify the molecular mechanisms and genes that contribute to the resistance to aging and cancer in NMRs, and to understand their relationship with evolutionary adaptation to their natural habitat. Prof. Miura also aims to extrapolate findings from the NMR model to several disease models of laboratory mice and, potentially, human diseases in the future. She is a member of several international research societies and has been recognized for her exemplary work, which has been published in various peer-reviewed journals.