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Biology subjects

Carpenter, S. M.

Publications and source records attributed to Carpenter, S. M..

2 recordsLinked to original sources

Human memory CD4+ T cells recognize non-infected macrophage bystanders exposed to Mycobacterium tuberculosis-infected cells

Control of Mycobacterium tuberculosis (Mtb) infection requires CD4+ T cell recognition of infected macrophages. However, T cells also colocalize with non-infected macrophages in granulomas. We investigated whether these bystander macrophages present Mtb antigens and shape human CD4+ T cell responses. Using ex vivo co-culture systems, non-infected monocyte-derived macrophages (MDMs) were exposed to Mtb-infected MDMs or infection-conditioned supernatants before co-incubation with autologous memory CD4+ T cells from individuals with latent Mtb infection (LTBI). Bystander macrophages activated memory CD4+ T cells through MHC-II-dependent antigen presentation. Single-cell T cell receptor (TCR) sequencing and TCR-transduced reporter cell lines identified Mtb-specific clonotypes recognizing both infected and bystander macrophages, as well as clonotypes preferentially recognizing infected cells. Strikingly, a subset of TCRs recognized infected but not bystander macrophages. Antigen transfer occurred through soluble Mtb proteins rather than extracellular vesicles. Compared with responses to infected macrophages, bystander macrophages induced attenuated effector responses. These findings reveal antigen-specific recognition of bystander macrophages and suggest that antigens preferentially presented by infected cells may inform TB vaccine design.

immunology↗

Human memory CD4+ T cells recognize Mycobacterium tuberculosis-infected macrophages amid broader pathogen-specific responses

Recognition of macrophages infected with Mycobacterium tuberculosis (Mtb) is essential for CD4+ T cells to prevent tuberculosis (TB). Yet not all antigen-specific T cells recognize infected macrophages in human and murine models. Using monocyte-derived macrophages (MDMs) and autologous memory CD4+ T cells from individuals with latent Mtb infection (LTBI), we quantify T cell activation in response to infected macrophages. T cell antigen receptor (TCR) sequencing revealed >70% of unique and >90% of total Mtb-specific TCR clonotypes in stable LTBI are linked to recognition of infected macrophages, while a subset required exogenous antigen exposure, suggesting incomplete recognition. Clonotypes specific for multiple Mtb antigens and other pathogens were identified, indicating Mtb-specific and non-specific activation. Single-cell transcriptomics demonstrates Mtb-specific T cells express signature effector functions dominated by IFN{gamma}, TNF, IL-2, and GM-CSF or chemokine production and signaling. We propose TB vaccines that elicit T cells capable of recognizing infected macrophages and expressing these canonical effector functions will offer protection against TB.

immunology↗