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Carro, S. D.

Publications and source records attributed to Carro, S. D..

2 recordsLinked to original sources

Endogenous antigen processing promotes mRNA vaccine CD4+ T cell responses

Lipid nanoparticle (LNP)-encapsulated nucleoside-modified mRNA vaccines elicit robust CD4+ T cell responses, which are essential for antiviral immunity1-3. While peptides presented to CD4+ T cells via major histocompatibility complex class II (MHC II) are traditionally thought to be derived from extracellular sources that are processed by antigen presenting cells (APCs) through the classical exogenous pathway4,5, the precise mechanisms of mRNA-LNP vaccine-specific CD4+ T cell priming remain unknown. Here, we investigated the role of alternative, endogenous antigen presentation pathways6,7 in inducing CD4+ T cell responses to mRNA-LNP vaccines. APCs treated with mRNA-LNP vaccines were consistently superior in activating T cells under conditions of endogenous, rather than exogenous, presentation. Immunization with an mRNA-LNP vaccine that excludes antigen expression in APCs resulted in lower antigen-specific CD4+ T cell, T follicular helper cell, and antibody responses than mice receiving control vaccine. In contrast, depletion of vaccine antigen from exogenous sources such as muscle cells resulted in little to no reduction in antigen-specific CD4+ T cells. Our findings demonstrate that direct presentation of endogenous antigen on MHC II is crucial to mRNA-LNP vaccine-induced immune responses and adds to a growing body of literature that redefines the paradigm of MHC II-restricted antigen processing and presentation.

immunology↗

The ectromelia virus virulence factor C15 facilitates early viral spread by inhibiting NK cell-infected cell contacts

The success of poxviruses as pathogens depends upon their antagonism of host responses by multiple immunomodulatory proteins. The largest of these expressed by ectromelia virus (the agent of mousepox) is C15, one member of a well-conserved poxviral family previously shown to inhibit T cell activation. Here, we demonstrate by quantitative immunofluorescence imaging that C15 also limits contact between natural killer (NK) cells and infected cells in vivo. This corresponds to an inhibition in the number of total and degranulating NK cells, ex vivo and in vitro, with no detectable impact on NK cell cytokine production nor the transcription of factors related to NK cell recruitment or activation. Thus, in addition to its previously identified capacity to antagonize CD4 T cell activation, C15 inhibits NK cell cytolytic function, which results in increased viral replication and dissemination in vivo. This work builds on a body of literature demonstrating the importance of early restriction of virus within the draining lymph node. summaryPoxvirus B22 family proteins are important virulence factors known to inhibit T cell functions. Peauroi et al. identify a novel function of the ectromelia virus homolog, C15, which inhibits NK cell-target contact and cytolytic function to facilitate early viral spread. (Provide a short, [~]40-word summary statement for the online JEM table of contents and alerts. This summary should describe the context and significance of the findings for a general readership; it should be written in the present tense and refer to the work in the third person.)

immunology↗