XCR1 expression distinguishes human conventional dendritic cells type 1 with full effector functions from their immediate precursors. XCR1 expression distinguishes human conventional dendritic cells type 1 with full effector functions from their immediate precursors
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https://www.ncbi.nlm.nih.gov/bioproject/PRJNA996218
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Dendritic cells (DCs) are major regulators of innate and adaptive immune responses. DCs can be classified into plasmacytoid DCs and conventional DCs (cDCs) type 1 and 2. Murine and human cDC1 share the mRNA expression of XCR1. Murine studies indicated a specific role of the XCR1-XCL1 axis in the induction of immune responses. Here, we describe that human cDC1 can be distinguished into XCR1- and XCR1+ cDC1 in lymphoid as well as non-lymphoid tissues. Steady state XCR1+ cDC1 display a pre-activated phenotype compared to XCR1- cDC1. Upon stimulation, XCR1+ cDC1, but not XCR1- cDC1, secreted high levels of inflammatory cytokines as well as chemokines. This was associated with enhanced activation of NK cells mediated by XCR1+ cDC1. Moreover, XCR1+ cDC1 excelled in inhibiting replication of Influenza A virus. Further, under DC differentiation conditions, XCR1- cDC1 developed into XCR1+ cDC1. After acquisition of XCR1 expression, XCR1- cDC1 secreted comparable level of inflammatory cytokines. Thus, XCR1 is a marker of terminally differentiated cDC1 that licenses the antiviral effector functions of human cDC1, while XCR1- cDC1 seem to represent a late immediate precursor of cDC1. Overall design: 4 samples are analyzed, each sample of cDC1 steady state and R848 have one additional replicate (n=2)
创建时间:
2023-07-18



