4.7 Article

Atypical chemokine receptor 1 on nucleated erythroid cells regulates hematopoiesis

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NATURE IMMUNOLOGY
卷 18, 期 7, 页码 753-+

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NATURE PUBLISHING GROUP
DOI: 10.1038/ni.3763

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资金

  1. Medical Research Council [G0802838]
  2. Senior Visiting Fellowship of the Center for Advanced Studies LMU, Munich
  3. Wellcome Trust [WT090962MA]
  4. Deutsche Zentrum Fur Herz-Kreislauf-Forschung [86X2600229]
  5. Marie Curie Actions Intra-European Fellowship ATHEROCHEMOKINE
  6. Deutsche Forschungsgemeinschaft [SFB1123/A1, SFB1123/Z1]
  7. INST [409/150-1 FUG]
  8. European Research Council grant ERC [AdG o692511]
  9. Swiss National Science Foundation [CRSII3_160719]
  10. TransCard PhD fellowship in Translational Cardiovascular and Metabolic Medicine of the Helmholtz International Research School
  11. ERA-EDTA short-term fellowship
  12. Ministry of Economy, Industry and Competitiveness (MINECO) [AF2015-65607-R]
  13. MINECO
  14. Pro-CNIC Foundation
  15. Medical Research Council [G0802838] Funding Source: researchfish
  16. Swiss National Science Foundation (SNF) [CRSII3_160719] Funding Source: Swiss National Science Foundation (SNF)
  17. BBSRC [BB/K009400/1] Funding Source: UKRI
  18. MRC [G0802838] Funding Source: UKRI

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Healthy individuals of African ancestry have neutropenia that has been linked with the variant rs2814778(G) of the gene encoding atypical chemokine receptor 1 (ACKR1). This polymorphism selectively abolishes the expression of ACKR1 in erythroid cells, causing a Duffy-negative phenotype. Here we describe an unexpected fundamental role for ACKR1 in hematopoiesis and provide the mechanism that links its absence with neutropenia. Nucleated erythroid cells had high expression of ACKR1, which facilitated their direct contact with hematopoietic stem cells. The absence of erythroid ACKR1 altered mouse hematopoiesis including stem and progenitor cells, which ultimately gave rise to phenotypically distinct neutrophils that readily left the circulation, causing neutropenia. Individuals with a Duffy-negative phenotype developed a distinct profile of neutrophil effector molecules that closely reflected the one observed in the ACKR1-deficient mice. Thus, alternative physiological patterns of hematopoiesis and bone marrow cell outputs depend on the expression of ACKR1 in the erythroid lineage, findings with major implications for the selection advantages that have resulted in the paramount fixation of the ACKR1 rs2814778(G) polymorphism in Africa.

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