Neuropeptide signalling orchestrates T cell differentiation.
basic_science · Level V
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- Record sourced from PubMed, PMID 39415015.
- Also identified by DOI 10.1038/s41586-024-08049-w and PMC identifier 11951087.
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Abstract
The balance between T helper type 1 (T<sub>H</sub>1) cells and other T<sub>H</sub> cells is critical for antiviral and anti-tumour responses<sup>1-3</sup>, but how this balance is achieved remains poorly understood. Here we dissected the dynamic regulation of T<sub>H</sub>1 cell differentiation during in vitro polarization, and during in vivo differentiation after acute viral infection. We identified regulators modulating T helper cell differentiation using a unique T<sub>H</sub>1-T<sub>H</sub>2 cell dichotomous culture system and systematically validated their regulatory functions through multiple in vitro and in vivo CRISPR screens. We found that RAMP3, a component of the receptor for the neuropeptide CGRP (calcitonin gene-related peptide), has a cell-intrinsic role in T<sub>H</sub>1 cell fate determination. Extracellular CGRP signalling through the receptor RAMP3-CALCRL restricted the differentiation of T<sub>H</sub>2 cells, but promoted T<sub>H</sub>1 cell differentiation through the activation of downstream cAMP response element-binding protein (CREB) and activating transcription factor 3 (ATF3). ATF3 promoted T<sub>H</sub>1 cell differentiation by inducing the expression of Stat1, a key regulator of T<sub>H</sub>1 cell differentiation. After viral infection, an interaction between CGRP produced by neurons and RAMP3 expressed on T cells enhanced the anti-viral IFNγ-producing T<sub>H</sub>1 and CD8<sup>+</sup> T cell response, and timely control of acute viral infection. Our research identifies a neuroimmune circuit in which neurons participate in T cell fate determination by producing the neuropeptide CGRP during acute viral infection, which acts on RAMP3-expressing T cells to induce an effective anti-viral T<sub>H</sub>1 cell response.
Medical subject headings
- Calcitonin Gene-Related Peptide
- Cell Differentiation
- Signal Transduction
- Th1 Cells
- Th2 Cells