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长寿冲绳人循环 microRNA 谱鉴定出优化寿命和健康跨度的新潜在靶点。

Circulating microRNA profile of long-lived Okinawans identifies novel potential targets for optimizing lifespan and health span.

机构信息

University of Central Florida College of Medicine, Burnett School of Biomedical Sciences, Orlando, Florida, USA.

Faculdade de Nutrição, Universidade Federal de Pelotas, Pelotas, Brazil.

出版信息

Aging Cell. 2024 Aug;23(8):e14191. doi: 10.1111/acel.14191. Epub 2024 May 15.

Abstract

Nonagenarians and centenarians serve as successful examples of aging and extended longevity, showcasing robust regulation of biological mechanisms and homeostasis. Given that human longevity is a complex field of study that navigates molecular and biological mechanisms influencing aging, we hypothesized that microRNAs, a class of small noncoding RNAs implicated in regulating gene expression at the post-transcriptional level, are differentially regulated in the circulatory system of young, middle-aged, and nonagenarian individuals. We sequenced circulating microRNAs in Okinawan males and females <40, 50-80, and >90 years of age accounting for FOXO3 genetic variations of single nucleotide polymorphism (SNP) rs2802292 (TT - common vs. GT - longevity) and validated the findings through RT-qPCR. We report five microRNAs exclusively upregulated in both male and female nonagenarians with the longevity genotype, play predictive functional roles in TGF-β, FoxO, AMPK, Pi3K-Akt, and MAPK signaling pathways. Our findings suggest that these microRNAs upregulated in nonagenarians may provide novel insight into enhanced lifespan and health span. This discovery warrants further exploration into their roles in human aging and longevity.

摘要

九十岁和百岁老人是成功衰老和长寿的典范,展示了强大的生物机制和内稳态调节。鉴于人类长寿是一个复杂的研究领域,涉及影响衰老的分子和生物学机制,我们假设 microRNAs,一类在转录后水平调节基因表达的小非编码 RNA,在年轻、中年和九十岁以上个体的循环系统中存在差异调节。我们对冲绳男性和女性进行了循环 microRNAs 的测序,年龄分别为<40、50-80 和>90 岁,考虑了 FOXO3 单核苷酸多态性 (SNP) rs2802292 的遗传变异(TT-常见与 GT-长寿),并通过 RT-qPCR 验证了这些发现。我们报告了在具有长寿基因型的男性和女性九十岁以上人群中,有五个 microRNAs 特异性上调,这些 microRNAs 在 TGF-β、FoxO、AMPK、Pi3K-Akt 和 MAPK 信号通路中具有预测性的功能作用。我们的发现表明,这些在九十岁以上人群中上调的 microRNAs 可能为增强寿命和健康寿命提供新的见解。这一发现值得进一步探索它们在人类衰老和长寿中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1cc/11320357/fc3c08bebcfb/ACEL-23-e14191-g004.jpg

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