Antigen presentation by CD40<sup>+</sup>MHC-II<sup>+</sup> astrocytes promotes CNS autoimmunity.

Lee, Joon-Hyuk; Li, Zhaorong; Soto, Joselyn S; Kim, Ah-Ram; Illouz, Tomer; Polonio, Carolina M; Kilian, Michael; Kenison, Jessica E et al. · Nature · 2026

basic_science · Level V

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Abstract

Astrocytes contribute to the pathology of multiple neurological disorders, including the T cell-driven autoimmune disease of the central nervous system (CNS) multiple sclerosis and its mouse model, experimental autoimmune encephalomyelitis<sup>1</sup>. However, little is known about functional interactions between astrocytes and CD4<sup>+</sup> T cells. Here using rabies barcode interaction detection followed by sequencing<sup>2</sup>, in combination with single-cell RNA sequencing, in vitro co-culture systems and cell-specific in vivo CRISPR-Cas9-based genetic perturbation studies, we established that astrocytes expressing CD40 and MHC-II promote CNS T cell autoimmunity. We harnessed universal labelling immune partnerships by SorTagging intercellular contacts<sup>3</sup> to analyse astrocyte-interacting CD4<sup>+</sup> T cells, finding that direct astrocyte-CD4<sup>+</sup> T cell interactions enhance pathogenic T helper 17 cell responses in experimental autoimmune encephalomyelitis. In addition, we studied the effect of these interactions on astrocytes. Using in vivo subproteomic approaches<sup>4</sup> and AlphaFold-Multimer predictions<sup>5</sup>, we established that CD40 activation in astrocytes by CD40L expressed by CD4<sup>+</sup> T cells induces the accumulation of PLIN4-positive lipid droplets, which provide acetyl-CoA to promote p65 acetylation-dependent NF-κB activation and antigen presentation. Finally, we detected CD40<sup>+</sup>MHC-II<sup>+</sup>LD<sup>+</sup> astrocytes in multiple sclerosis samples by single-nucleus RNA sequencing and immunohistochemistry. In summary, these studies define a previously unrecognized mechanism by which astrocytes promote CNS autoimmunity.