<p>Type 1 conventional dendritic cells (cDC1s) are unique in their efferocytosis<sup><CitationRef CitationID="CR1">1</CitationRef></sup> and cross-presenting abilities<sup><CitationRef CitationID="CR2">2</CitationRef></sup>, resulting in antigen-specific T cell immunity<sup><CitationRef CitationID="CR3">3</CitationRef></sup> or tolerance<sup><CitationRef AdditionalCitationIDS="CR5 CR6 CR7" CitationID="CR4">4</CitationRef>–<CitationRef CitationID="CR8">8</CitationRef></sup>. However, the mechanisms that underlie cDC1 tolerogenic function remain largely unknown. Here we show that the erythropoietin receptor (EPOR) acts as a critical switch that determines the tolerogenic function of cDC1s and the threshold of antigen-specific T cell responses. In total lymphoid irradiation-induced allograft tolerance<sup><CitationRef CitationID="CR9">9</CitationRef>,<CitationRef CitationID="CR10">10</CitationRef></sup>, cDC1s upregulate EPOR expression, and conditional knockout of EPOR in cDC1s diminishes antigen-specific induction and expansion of FOXP3<sup>+</sup> regulatory T (T<sub>reg</sub>) cells, resulting in allograft rejection. Mechanistically, EPOR promotes efferocytosis-induced tolerogenic maturation<sup><CitationRef CitationID="CR7">7</CitationRef>,<CitationRef CitationID="CR11">11</CitationRef></sup> of splenic cDC1s towards late-stage CCR7<sup>+</sup> cDC1s characterized by increased expression of the integrin β8 gene<sup><CitationRef CitationID="CR12">12</CitationRef></sup> (<i>Itgb8</i>), and conditional knockout of <i>Itgb8</i> in cDC1s impairs tolerance induced by total lymphoid irradiation plus anti-thymocyte serum. Migratory cDC1s in peripheral lymph nodes preferentially express EPOR, and their FOXP3<sup>+</sup> T<sub>reg</sub> cell-inducing capacity is enhanced by erythropoietin. Reciprocally, loss of EPOR enables immunogenic maturation of peripheral lymph node migratory and splenic CCR7<sup>+</sup> cDC1s by upregulating genes involved in MHC class II- and class I-mediated antigen presentation, cross-presentation and costimulation. EPOR deficiency in cDC1s reduces tumour growth by enhancing anti-tumour T cell immunity, particularly increasing the generation of precursor exhausted tumour antigen-specific CD8<sup>+</sup> T cells<sup><CitationRef CitationID="CR13">13</CitationRef></sup> in tumour-draining lymph nodes and supporting their maintenance within tumours, while concurrently reducing intratumoural T<sub>reg</sub> cells. Targeting EPOR on cDC1s to induce or inhibit T cell immune tolerance could have potential for treating a variety of diseases.</p>

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Erythropoietin receptor on cDC1s dictates immune tolerance

  • Xiangyue Zhang,
  • Christopher S. McGinnis,
  • Guotao Yu,
  • Sijie Chen,
  • Pingping Zheng,
  • Christian M. Schürch,
  • Kamir J. Hiam-Galvez,
  • Nathan E. Reticker-Flynn,
  • Wenhui Guo,
  • Winnie Yao,
  • Jingtao Qiu,
  • Alexander Muselman,
  • Ian L. Linde,
  • John W. Hickey,
  • Hao Yan,
  • Victoria M. Tran,
  • Wenli Qiu,
  • Delphine Brichart-Vernos,
  • Toshihito Hirai,
  • Bo Yu,
  • Xiuli An,
  • Yanling Xiao,
  • Helena Paidassi,
  • Tiffany C. Scharschmidt,
  • Michael Angelo,
  • Dean Sheppard,
  • Hongbo Chi,
  • Ansuman T. Satpathy,
  • Sing Sing Way,
  • Bernard Malissen,
  • Samuel Strober,
  • Edgar G. Engleman

摘要

Type 1 conventional dendritic cells (cDC1s) are unique in their efferocytosis1 and cross-presenting abilities2, resulting in antigen-specific T cell immunity3 or tolerance48. However, the mechanisms that underlie cDC1 tolerogenic function remain largely unknown. Here we show that the erythropoietin receptor (EPOR) acts as a critical switch that determines the tolerogenic function of cDC1s and the threshold of antigen-specific T cell responses. In total lymphoid irradiation-induced allograft tolerance9,10, cDC1s upregulate EPOR expression, and conditional knockout of EPOR in cDC1s diminishes antigen-specific induction and expansion of FOXP3+ regulatory T (Treg) cells, resulting in allograft rejection. Mechanistically, EPOR promotes efferocytosis-induced tolerogenic maturation7,11 of splenic cDC1s towards late-stage CCR7+ cDC1s characterized by increased expression of the integrin β8 gene12 (Itgb8), and conditional knockout of Itgb8 in cDC1s impairs tolerance induced by total lymphoid irradiation plus anti-thymocyte serum. Migratory cDC1s in peripheral lymph nodes preferentially express EPOR, and their FOXP3+ Treg cell-inducing capacity is enhanced by erythropoietin. Reciprocally, loss of EPOR enables immunogenic maturation of peripheral lymph node migratory and splenic CCR7+ cDC1s by upregulating genes involved in MHC class II- and class I-mediated antigen presentation, cross-presentation and costimulation. EPOR deficiency in cDC1s reduces tumour growth by enhancing anti-tumour T cell immunity, particularly increasing the generation of precursor exhausted tumour antigen-specific CD8+ T cells13 in tumour-draining lymph nodes and supporting their maintenance within tumours, while concurrently reducing intratumoural Treg cells. Targeting EPOR on cDC1s to induce or inhibit T cell immune tolerance could have potential for treating a variety of diseases.