A comprehensive single-cell atlas of three centenarian cohorts unveils unique natural killer cell signatures and enhanced mutual interactions among peripheral immune cells

对三个百岁老人队列的单细胞图谱进行全面分析,揭示了独特的自然杀伤细胞特征以及外周免疫细胞间增强的相互作用。

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作者:Bin Wang ,Zehao Zhang ,Qing Ouyang ,Min Zhang ,Mingda Duan ,Hongyan Hu ,Qingtao Zhang ,Xinye Jin ,Jie Zhang ,Qing Luo ,Ding Sun ,Hao Li ,Zeyu Qu ,Xiangmei Chen ,Zhifeng Gu ,Yizhi Chen

Abstract

Background: Centenarians are considered as an optimal population for studying healthy ageing. However, immune features associated with super longevity have only been investigated in a few small studies using a single research method. Methods: In this study, single-cell RNA sequencing (scRNA-seq), mass cytometry, and flow cytometry analysis were used to analyse the immune feature of peripheral blood mononuclear cells (PBMCs) from 17 centenarians (CENs), 9 of their offsprings (COs), and 14 of their offsprings' spouses or neighbours (controls, CTs) from Lingao County of China. scRNA-seq data from the other two cohorts were downloaded from public databases. Findings: Comprehensive analysis of 31 CENs, 17 COs, and 26 CTs from these three cohorts revealed decreased percentages of B cells and CD4+ T cells and an increased percentage of natural killer (NK) cells in PBMCs from CENs, compared with CTs. Moreover, NK cells from CENs exhibited relatively "young" signatures, including cell subset distribution and key membrane receptor expression. Enhanced RUNX3 expression in NK cells was observed in CENs, with reinforced interactions between NK and T cells, which promoted T cell function by modulating MHC-I, CD99 and MIF signalling. Interpretation: CENs exhibit unique immunological features, especially NK cells with young protein expression signatures and immune functions. Funding: This study was funded by the Sanya Science and Technology Innovation Special Project (No. 2022KJCX02), National Natural Science Foundation of China (No. 32141005, 82270769), Specific Research Fund of the Innovation Platform for Academicians of Hainan Province, and National Key Research and Development Program of China (Nos. 2022YFC3602900, 2022YFC3602902, 2022YFC3602903).

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