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    LPS-Induced Migration of Peritoneal B-1 Cells is Associated with Upregulation of CXCR4 and Increased Migratory Sensitivity to CXCL12

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    https://www.riss.kr/link?id=A104749985

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    B-1 cells, which constitute a predominant lymphocyte subset in serosal cavities and produce most of natural antibodies, are subdivided into the CD5+ B-1a and CD5- B-1b cell subpopulations, but the differential roles of B-1a and B-1b cells are not well understood.

    We report that B-1a cells preferentially migrate out of the peritoneal cavity and upregulate the expression of CXCR4 with heightened sensitivity to CXCL12 and CXCL13 upon LPS treatment compared to B-1b and B-2 cells. Whereas B-1a cells were slightly more abundant than B-1b and B-2 cells in the homeostatic condition, the number of B-1a cells preferentially decreased 48 hr after LPS treatment. The decrease in the peritoneal B-1a cell number was accompanied with increased migration of B-1a cells toward CXCL-12 and CXCL-13 in in vitro transmigration assay using peritoneal B cells from LPS treated mice. The expression level of CXCR4, but not of CXCR5, was also more prominently increased in B-1a cells upon LPS stimulation. LPS-stimulated B-1a cells did not accumulate in omental milky spots in contrast to B-2 cells. These results suggest that B-1a cells actively migrate out of the peritoneal cavity through the regulation of the migratory responsiveness to chemokines and actively participate in systemic immune responses.
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    B-1 cells, which constitute a predominant lymphocyte subset in serosal cavities and produce most of natural antibodies, are subdivided into the CD5+ B-1a and CD5- B-1b cell subpopulations, but the differential roles of B-1a and B-1b cells are not well...

    B-1 cells, which constitute a predominant lymphocyte subset in serosal cavities and produce most of natural antibodies, are subdivided into the CD5+ B-1a and CD5- B-1b cell subpopulations, but the differential roles of B-1a and B-1b cells are not well understood.

    We report that B-1a cells preferentially migrate out of the peritoneal cavity and upregulate the expression of CXCR4 with heightened sensitivity to CXCL12 and CXCL13 upon LPS treatment compared to B-1b and B-2 cells. Whereas B-1a cells were slightly more abundant than B-1b and B-2 cells in the homeostatic condition, the number of B-1a cells preferentially decreased 48 hr after LPS treatment. The decrease in the peritoneal B-1a cell number was accompanied with increased migration of B-1a cells toward CXCL-12 and CXCL-13 in in vitro transmigration assay using peritoneal B cells from LPS treated mice. The expression level of CXCR4, but not of CXCR5, was also more prominently increased in B-1a cells upon LPS stimulation. LPS-stimulated B-1a cells did not accumulate in omental milky spots in contrast to B-2 cells. These results suggest that B-1a cells actively migrate out of the peritoneal cavity through the regulation of the migratory responsiveness to chemokines and actively participate in systemic immune responses.

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    참고문헌 (Reference)

    1 Chumley MJ, "The unique antigen receptor signaling phenotype of B-1 cells is influenced by locale but induced by antigen" 169 : 1735-1743, 2002

    2 Baumgarth N, "The double life of a B-1 cell: self-reactivity selects for protective effector functions" 11 : 34-46, 2011

    3 Glodek AM, "Sustained activation of cell adhesion is a differentially regulated process in B lymphopoiesis" 197 : 461-473, 2003

    4 Le Y, "SOCS3 protein developmentally regulates the chemokine receptor CXCR4-FAK signaling pathway during B lymphopoiesis" 27 : 811-823, 2007

    5 Foussat A, "Production of stromal cell-derived factor 1 by mesothelial cells and effects of this chemokine on peritoneal B lymphocytes" 31 : 350-359, 2001

    6 Hwan-JungYun, "Production of Stromal Cell-Derived Factor-1 (SDF-1) and Expression of CXCR4 in Human Bone Marrow Endothelial Cells" 대한의학회 18 (18): 679-685, 2003

    7 Tarlinton D, "Plasma cell differentiation and survival" 20 : 162-169, 2008

    8 Rangel-Moreno J, "Omental milky spots develop in the absence of lymphoid tissue-inducer cells and support B and T cell responses to peritoneal antigens" 30 : 731-743, 2009

    9 Montecino-Rodriguez E, "New perspectives in B-1 B cell development and function" 27 : 428-433, 2006

    10 Sugiyama T, "Maintenance of the hematopoietic stem cell pool by CXCL12-CXCR4 chemokine signaling in bone marrow stromal cell niches" 25 : 977-988, 2006

    1 Chumley MJ, "The unique antigen receptor signaling phenotype of B-1 cells is influenced by locale but induced by antigen" 169 : 1735-1743, 2002

    2 Baumgarth N, "The double life of a B-1 cell: self-reactivity selects for protective effector functions" 11 : 34-46, 2011

    3 Glodek AM, "Sustained activation of cell adhesion is a differentially regulated process in B lymphopoiesis" 197 : 461-473, 2003

    4 Le Y, "SOCS3 protein developmentally regulates the chemokine receptor CXCR4-FAK signaling pathway during B lymphopoiesis" 27 : 811-823, 2007

    5 Foussat A, "Production of stromal cell-derived factor 1 by mesothelial cells and effects of this chemokine on peritoneal B lymphocytes" 31 : 350-359, 2001

    6 Hwan-JungYun, "Production of Stromal Cell-Derived Factor-1 (SDF-1) and Expression of CXCR4 in Human Bone Marrow Endothelial Cells" 대한의학회 18 (18): 679-685, 2003

    7 Tarlinton D, "Plasma cell differentiation and survival" 20 : 162-169, 2008

    8 Rangel-Moreno J, "Omental milky spots develop in the absence of lymphoid tissue-inducer cells and support B and T cell responses to peritoneal antigens" 30 : 731-743, 2009

    9 Montecino-Rodriguez E, "New perspectives in B-1 B cell development and function" 27 : 428-433, 2006

    10 Sugiyama T, "Maintenance of the hematopoietic stem cell pool by CXCL12-CXCR4 chemokine signaling in bone marrow stromal cell niches" 25 : 977-988, 2006

    11 Carlow DA, "Lymphocytes in the peritoneum home to the omentum and are activated by resident dendritic cells" 183 : 1155-1165, 2009

    12 Ma Q, "Impaired B-lymphopoiesis, myelopoiesis, and derailed cerebellar neuron migration in CXCR4- and SDF-1-deficient mice" 95 : 9448-9453, 1998

    13 Montecino-Rodriguez E, "Identification of a B-1 B cell-specified progenitor" 7 : 293-301, 2006

    14 Allen CD, "Germinal center dark and light zone organization is mediated by CXCR4 and CXCR5" 5 : 943-952, 2004

    15 Palmesino E, "Differences in CXCR4- mediated signaling in B cells" 211 : 377-389, 2006

    16 Bowman EP, "Developmental switches in chemokine response profiles during B cell differentiation and maturation" 191 : 1303-1318, 2000

    17 Nagasawa T, "Defects of B-cell lymphopoiesis and bone-marrow myelopoiesis in mice lacking the CXC chemokine PBSF/ SDF-1" 382 : 635-638, 1996

    18 Baggiolini M, "Chemokines and leukocyte traffic" 392 : 565-568, 1998

    19 Sallusto F, "Chemoattractants and their receptors in homeostasis and inflammation" 16 : 724-731, 2004

    20 Krist LF, "Cellular composition of milky spots in the human greater omentum: an immunochemical and ultrastructural study" 241 : 163-174, 1995

    21 Caron G, "CXCR4 expression functionally discriminates centroblasts versus centrocytes within human germinal center B cells" 182 : 7595-7602, 2009

    22 Ansel KM, "CXCL13 is required for B1 cell homing, natural antibody production, and body cavity immunity" 16 : 67-76, 2002

    23 Nakashima H, "CD22 expression mediates the regulatory functions of peritoneal B-1a cells during the remission phase of contact hypersensitivity reactions" 184 : 4637-4645, 2010

    24 Alugupalli KR, "B1b lymphocytes confer T cell-independent long-lasting immunity" 21 : 379-390, 2004

    25 Wardemann H, "B-1a B cells that link the innate and adaptive immune responses are lacking in the absence of the spleen" 195 : 771-780, 2002

    26 Nogueira-Martins MF, "B-1 cell participation in T-cell-mediated alloimmune response" 215 : 264-274, 2010

    27 Hardy RR, "B-1 B cells: development, selection, natural autoantibody and leukemia" 18 : 547-555, 2006

    28 Szczepanik M, "B-1 B cells mediate required early T cell recruitment to elicit protein-induced delayed-type hypersensitivity" 171 : 6225-6235, 2003

    29 Förster R, "A putative chemokine receptor, BLR1, directs B cell migration to defined lymphoid organs and specific anatomic compartments of the spleen" 87 : 1037-1047, 1996

    30 Ansel KM, "A chemokine-driven positive feedback loop organizes lymphoid follicles" 406 : 309-314, 2000

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