<p>B-1 cells are innate-like immune cells abundant in serosal cavities with antibodies enriched in bacterial recognition, yet their existence in humans has been controversial<sup><CitationRef AdditionalCitationIDS="CR2" CitationID="CR1">1</CitationRef>–<CitationRef CitationID="CR3">3</CitationRef></sup>. The CD5<sup>+</sup> B-1a subset expresses anti-inflammatory molecules including IL-10, PDL1 and CTLA4 and can be immunoregulatory<sup><CitationRef AdditionalCitationIDS="CR5" CitationID="CR4">4</CitationRef>–<CitationRef CitationID="CR6">6</CitationRef></sup>. Unlike conventional B cells that are continuously replenished, B-1a cells are produced early in life and maintained through self-renewal<sup><CitationRef CitationID="CR7">7</CitationRef></sup>. Here we show that the transcription factors TCF1 and LEF1 are critical regulators of B-1a cells. LEF1 expression is highest in fetal and bone marrow B-1 progenitors, whereas the levels of TCF1 are higher in splenic and peritoneal B-1 cells than in B-1 progenitors. TCF1–LEF1 double deficient mice have reduced B-1a cells and defective B-1a cell maintenance. These transcription factors promote MYC-dependent metabolic pathways and induce a stem-like population upon activation, partly via IL-10 production. In the absence of TCF1 and LEF1, B-1 cells proliferate excessively and acquire an exhausted phenotype with reduced IL-10 and PDL1 expression. Furthermore, adoptive transfer of B-1 cells lacking TCF1 and LEF1 fails to suppress brain inflammation. These transcription factors are also expressed in human chronic lymphocytic leukaemia B cells and in a B-1-like population that is abundant in pleural fluid and circulation of some patients with pleural infection. Our findings define a TCF1–LEF1-driven transcriptional program that integrates stemness and regulatory function in B-1a cells.</p>

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TCF1 and LEF1 promote B-1a cell homeostasis and regulatory function

  • Qian Shen,
  • Hao Wang,
  • Jonathan A. Roco,
  • Xiangpeng Meng,
  • Marita Bosticardo,
  • Marie Hodges,
  • Michael Battaglia,
  • Zhi-Ping Feng,
  • Benjamin James Talks,
  • Jason Powell,
  • Vijaya Baskar Mahalingam Shanmugiah,
  • Julia Chu,
  • Najib M. Rahman,
  • Alguili Elsheikh,
  • Probir Chakravarty,
  • Amalie Grenov,
  • Max Emmerich,
  • Ottavia M. Delmonte,
  • Alexandra F. Freeman,
  • Michael D. Keller,
  • Brahim Belaid,
  • Ilenia Papa,
  • James C. Lee,
  • Pablo F. Cañete,
  • Paula Gonzalez-Figueroa,
  • Yaoyuan Zhang,
  • Hai-Hui Xue,
  • Samra Turajlic,
  • Luigi D. Notarangelo,
  • Muzlifah Haniffa,
  • Lee Ann Garrett-Sinha,
  • Helen M. Parry,
  • Nikolaos I. Kanellakis,
  • Carola G. Vinuesa

摘要

B-1 cells are innate-like immune cells abundant in serosal cavities with antibodies enriched in bacterial recognition, yet their existence in humans has been controversial13. The CD5+ B-1a subset expresses anti-inflammatory molecules including IL-10, PDL1 and CTLA4 and can be immunoregulatory46. Unlike conventional B cells that are continuously replenished, B-1a cells are produced early in life and maintained through self-renewal7. Here we show that the transcription factors TCF1 and LEF1 are critical regulators of B-1a cells. LEF1 expression is highest in fetal and bone marrow B-1 progenitors, whereas the levels of TCF1 are higher in splenic and peritoneal B-1 cells than in B-1 progenitors. TCF1–LEF1 double deficient mice have reduced B-1a cells and defective B-1a cell maintenance. These transcription factors promote MYC-dependent metabolic pathways and induce a stem-like population upon activation, partly via IL-10 production. In the absence of TCF1 and LEF1, B-1 cells proliferate excessively and acquire an exhausted phenotype with reduced IL-10 and PDL1 expression. Furthermore, adoptive transfer of B-1 cells lacking TCF1 and LEF1 fails to suppress brain inflammation. These transcription factors are also expressed in human chronic lymphocytic leukaemia B cells and in a B-1-like population that is abundant in pleural fluid and circulation of some patients with pleural infection. Our findings define a TCF1–LEF1-driven transcriptional program that integrates stemness and regulatory function in B-1a cells.