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Biology subjects

Whitmire, J. K.

Publications and source records attributed to Whitmire, J. K..

3 recordsLinked to original sources

Pathologic T cell immunosenescence drives the development of age-associated autoimmune peripheral neuropathy

While certain autoimmune conditions are more common in the young (e.g. Type 1 Diabetes), others are more frequent in the aged. A striking example is chronic inflammatory demyelinating polyneuropathy (CIDP), a CD4+ T cell-mediated autoimmune disease of the peripheral nervous system, which has a peak decade of onset of 70-79 years. How aging predisposes to autoimmunity, however, remains unclear. CD4+ T cells are highly susceptible to age-associated changes, including acquisition of immunosenescent features such as enhanced SA-{beta}-gal activity, increased Cdkn1a (p21) expression, and upregulation of Tnfsf8 (CD153). We show here that CD4+ T cells exhibiting these changes are increased in CIDP patients and mice with CIDP-like disease. These CD4+ T cells exhibit a senescence-associated secretory phenotype (SASP), show functional senescence (i.e., decreased proliferation and resistance to apoptosis), and have enhanced capacity for inciting neuropathy. Notably, a senescent cell-clearing senolytic agent (fisetin) decreased the pathogenic capacity of CD4+ T cells, and a SASP-suppressing senomorphic therapy (ruxolitinib) protected mice against autoimmune demyelination. Together, these findings delineate a key role for age-associated senescent CD4+ T cells in driving age-associated autoimmunity.

immunology↗

A pathologically expanded, clonal lineage of IL-21 producing CD4+ T cells drives Inflammatory neuropathy

Inflammatory neuropathies, which include CIDP (chronic inflammatory demyelinating polyneuropathy) and GBS (Guillain Barre Syndrome), result from autoimmune destruction of the peripheral nervous system (PNS) and are characterized by progressive weakness and sensory loss. CD4+ T cells play a key role in the autoimmune destruction of the PNS. Yet, key properties of pathogenic CD4+ T cells remain incompletely understood. Here, we use paired scRNAseq and scTCRseq of peripheral nerves from an inflammatory neuropathy mouse model to identify IL-21 expressing CD4+ T cells that are clonally expanded and multifunctional. These IL-21-expressing CD4+ T cells are comprised of two transcriptionally distinct expanded populations, which express genes associated with Tfh and Tph subsets. Remarkably, TCR clonotypes are shared between these two IL-21-expressing populations, suggesting a common lineage differentiation pathway. Finally, we demonstrate that IL-21 signaling is required for neuropathy development and pathogenic T cell infiltration into peripheral nerves. IL-21 signaling upregulates CXCR6, a chemokine receptor that promotes CD4+ T cell localization in peripheral nerves. Together, these findings point to IL-21 signaling, Tfh/Tph differentiation, and CXCR6-mediated cellular localization as potential therapeutic targets in inflammatory neuropathies.

immunology↗

Interferon lambda restricts herpes simplex virus skin disease by suppressing neutrophil-mediated pathology

Type III interferons (IFN-{lambda}) are antiviral and immunomodulatory cytokines that have been best characterized in respiratory and gastrointestinal infections, but the effects of IFN-{lambda} against skin infections have not been extensively investigated. We sought to define the skin-specific effects of IFN-{lambda} against the highly prevalent human pathogen herpes simplex virus (HSV). We infected mice lacking the IFN-{lambda} receptor (Ifnlr1-/-), both the IFN-{lambda} and the IFN-{beta} receptor (Ifnar1-/- Ifnlr1-/-), or IFN-{lambda} cytokines (Ifnl2/3-/-) and found that IFN-{lambda} restricts the severity of HSV-1 and HSV-2 skin lesions, independent of a direct effect on viral load. Using conditional knockout mice, we found that IFN-{lambda} signaling in both keratinocytes and neutrophils was necessary to control HSV-1 skin lesion severity, and that IFN-{lambda} signaling in keratinocytes suppressed CXCL9-mediated neutrophil recruitment to the skin. Furthermore, depleting neutrophils or blocking CXCL9 protected against severe HSV-1 skin lesions in Ifnlr1-/- mice. Altogether, our results suggest that IFN-{lambda} plays an immunomodulatory role in the skin that restricts neutrophil-mediated pathology during HSV infection, and suggest potential applications for IFN-{lambda} in treating viral skin infections. Graphical Abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=137 SRC="FIGDIR/small/557277v1_ufig1.gif" ALT="Figure 1"> View larger version (41K): org.highwire.dtl.DTLVardef@110a7feorg.highwire.dtl.DTLVardef@853e46org.highwire.dtl.DTLVardef@1bb744aorg.highwire.dtl.DTLVardef@1cfdf94_HPS_FORMAT_FIGEXP M_FIG C_FIG

immunology↗