Multimodally profiling memory T cells from a tuberculosis cohort identifies cell state associations with demographics, environment and disease
Publication date
2021-06
Authors
Nathan, Aparna
Beynor, Jessica I
Baglaenko, Yuriy
Suliman, Sara
Ishigaki, Kazuyoshi
Asgari, Samira
Huang, Chuan-Chin
Luo, Yang
Zhang, Zibiao
Lopez, Kattya
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Advisors
Supervisors
Document Type
Article
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taverne
Abstract
Multimodal T cell profiling can enable more precise characterization of elusive cell states underlying disease. Here, we integrated single-cell RNA and surface protein data from 500,089 memory T cells to define 31 cell states from 259 individuals in a Peruvian tuberculosis (TB) progression cohort. At immune steady state >4 years after infection and disease resolution, we found that, after accounting for significant effects of age, sex, season and genetic ancestry on T cell composition, a polyfunctional type 17 helper T (TH17) cell-like effector state was reduced in abundance and function in individuals who previously progressed from Mycobacterium tuberculosis (M.tb) infection to active TB disease. These cells are capable of responding to M.tb peptides. Deconvoluting this state-uniquely identifiable with multimodal analysis-from public data demonstrated that its depletion may precede and persist beyond active disease. Our study demonstrates the power of integrative multimodal single-cell profiling to define cell states relevant to disease and other traits.
Keywords
Taverne, Immunology and Allergy, Immunology, SDG 3 - Good Health and Well-being
Citation
Nathan, A, Beynor, J I, Baglaenko, Y, Suliman, S, Ishigaki, K, Asgari, S, Huang, C-C, Luo, Y, Zhang, Z, Lopez, K, Lindestam Arlehamn, C S, Ernst, J D, Jimenez, J, Calderón, R I, Lecca, L, Van Rhijn, I, Moody, D B, Murray, M B & Raychaudhuri, S 2021, 'Multimodally profiling memory T cells from a tuberculosis cohort identifies cell state associations with demographics, environment and disease', Nature Immunology, vol. 22, no. 6, pp. 781-793. https://doi.org/10.1038/s41590-021-00933-1