Department of Biology, University of Rochester, Rochester, NY, USA.
Division of Genetics, Department of Medicine, Brigham and Women's Hospital and Harvard Medical School, Boston, MA, USA.
Nature. 2023 Sep;621(7977):196-205. doi: 10.1038/s41586-023-06463-0. Epub 2023 Aug 23.
Abundant high-molecular-mass hyaluronic acid (HMM-HA) contributes to cancer resistance and possibly to the longevity of the longest-lived rodent-the naked mole-rat. To study whether the benefits of HMM-HA could be transferred to other animal species, we generated a transgenic mouse overexpressing naked mole-rat hyaluronic acid synthase 2 gene (nmrHas2). nmrHas2 mice showed an increase in hyaluronan levels in several tissues, and a lower incidence of spontaneous and induced cancer, extended lifespan and improved healthspan. The transcriptome signature of nmrHas2 mice shifted towards that of longer-lived species. The most notable change observed in nmrHas2 mice was attenuated inflammation across multiple tissues. HMM-HA reduced inflammation through several pathways, including a direct immunoregulatory effect on immune cells, protection from oxidative stress and improved gut barrier function during ageing. These beneficial effects were conferred by HMM-HA and were not specific to the nmrHas2 gene. These findings demonstrate that the longevity mechanism that evolved in the naked mole-rat can be exported to other species, and open new paths for using HMM-HA to improve lifespan and healthspan.
大量的高分子质量透明质酸(HMM-HA)有助于癌症抵抗,可能还有助于最长寿的啮齿动物——裸鼹鼠的长寿。为了研究 HMM-HA 的益处是否可以转移到其他动物物种,我们生成了一种过表达裸鼹鼠透明质酸合酶 2 基因(nmrHas2)的转基因小鼠。nmrHas2 小鼠在几种组织中的透明质酸水平增加,自发性和诱导性癌症的发病率降低,寿命延长,健康寿命改善。nmrHas2 小鼠的转录组特征向寿命更长的物种转变。在 nmrHas2 小鼠中观察到的最显著变化是多种组织的炎症减轻。HMM-HA 通过多种途径减轻炎症,包括对免疫细胞的直接免疫调节作用、防止氧化应激以及在衰老过程中改善肠道屏障功能。这些有益效果是由 HMM-HA 赋予的,而不是 nmrHas2 基因所特有的。这些发现表明,在裸鼹鼠中进化而来的长寿机制可以被转移到其他物种,并为利用 HMM-HA 延长寿命和健康寿命开辟了新途径。