Antigen-Presenting B Cells Program the Efferent Lymph T Helper Cell Response. 2022

Samuel Alsén, and Jakob Cervin, and Yaxiong Deng, and Louis Szeponik, and Ulf Alexander Wenzel, and Joakim Karlsson, and Helena Cucak, and Megan Livingston, and David Bryder, and Qianjin Lu, and Bengt Johansson-Lindbom, and Ulf Yrlid
Department of Microbiology and Immunology, Institute of Biomedicine, University of Gothenburg, Gothenburg, Sweden.

B cells interact with T follicular helper (Tfh) cells in germinal centers (GCs) to generate high-affinity antibodies. Much less is known about how cognate T-B-cell interactions influence Th cells that enter circulation and peripheral tissues. Therefore, we generated mice lacking MHC-II expressing B cells and, by thoracic duct cannulation, analyzed Th cells in the efferent lymph at defined intervals post-immunization. Focusing on gut-draining mesenteric lymph nodes (MLNs), we show that antigen-specific α4β7+ gut-homing effector Th cells enter the circulation prior to CXCR5+PD-1+ Tfh-like cells. B cells appear to have no or limited impact on the early generation and egress of gut-homing Th cells but are critical for the subsequent appearance of Tfh-like cells that peak in the lymph before GCs have developed. At this stage, antigen-presenting B cells also reduce the proportion of α4β7+ Th cells in the MLN and efferent lymph. Furthermore, cognate B-cell interaction drives a broad transcriptional program in Th cells, including IL-4 that is confined to the Tfh cell lineage. The IL-4-producing Tfh-like cells originate from Bcl6+ precursors in the LNs and have gut-homing capacity. Hence, B cells program the efferent lymph Th cell response within a limited window of time after antigenic challenge.

UI MeSH Term Description Entries
D006377 T-Lymphocytes, Helper-Inducer Subpopulation of CD4+ lymphocytes that cooperate with other lymphocytes (either T or B) to initiate a variety of immune functions. For example, helper-inducer T-cells cooperate with B-cells to produce antibodies to thymus-dependent antigens and with other subpopulations of T-cells to initiate a variety of cell-mediated immune functions. Helper Cell,Helper Cells,Helper T Cell,Helper-Inducer T-Lymphocytes,Inducer Cell,Inducer Cells,T-Cells, Helper-Inducer,T-Lymphocytes, Helper,T-Lymphocytes, Inducer,Helper T-Cells,Cell, Helper T,Cells, Helper T,Helper Inducer T Lymphocytes,Helper T Cells,Helper T-Cell,Helper T-Lymphocyte,Helper T-Lymphocytes,Helper-Inducer T-Cell,Helper-Inducer T-Cells,Helper-Inducer T-Lymphocyte,Inducer T-Lymphocyte,Inducer T-Lymphocytes,T Cell, Helper,T Cells, Helper,T Cells, Helper Inducer,T Lymphocytes, Helper,T Lymphocytes, Helper Inducer,T Lymphocytes, Inducer,T-Cell, Helper,T-Cell, Helper-Inducer,T-Cells, Helper,T-Lymphocyte, Helper,T-Lymphocyte, Helper-Inducer,T-Lymphocyte, Inducer
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001402 B-Lymphocytes Lymphoid cells concerned with humoral immunity. They are short-lived cells resembling bursa-derived lymphocytes of birds in their production of immunoglobulin upon appropriate stimulation. B-Cells, Lymphocyte,B-Lymphocyte,Bursa-Dependent Lymphocytes,B Cells, Lymphocyte,B Lymphocyte,B Lymphocytes,B-Cell, Lymphocyte,Bursa Dependent Lymphocytes,Bursa-Dependent Lymphocyte,Lymphocyte B-Cell,Lymphocyte B-Cells,Lymphocyte, Bursa-Dependent,Lymphocytes, Bursa-Dependent
D015847 Interleukin-4 A soluble factor produced by activated T-LYMPHOCYTES that induces the expression of MHC CLASS II GENES and FC RECEPTORS on B-LYMPHOCYTES and causes their proliferation and differentiation. It also acts on T-lymphocytes, MAST CELLS, and several other hematopoietic lineage cells. B-Cell Growth Factor-I,B-Cell Stimulatory Factor-1,Binetrakin,IL-4,Mast Cell Growth Factor-2,B Cell Stimulatory Factor-1,B-Cell Growth Factor-1,B-Cell Proliferating Factor,B-Cell Stimulating Factor-1,B-Cell Stimulatory Factor 1,BCGF-1,BSF-1,IL4,MCGF-2,B Cell Growth Factor 1,B Cell Growth Factor I,B Cell Proliferating Factor,B Cell Stimulating Factor 1,B Cell Stimulatory Factor 1,Interleukin 4,Mast Cell Growth Factor 2
D051379 Mice The common name for the genus Mus. Mice, House,Mus,Mus musculus,Mice, Laboratory,Mouse,Mouse, House,Mouse, Laboratory,Mouse, Swiss,Mus domesticus,Mus musculus domesticus,Swiss Mice,House Mice,House Mouse,Laboratory Mice,Laboratory Mouse,Mice, Swiss,Swiss Mouse,domesticus, Mus musculus
D054380 Receptors, CXCR5 CXCR receptors isolated initially from BURKITT LYMPHOMA cells. CXCR5 receptors are expressed on mature, recirculating B-LYMPHOCYTES and are specific for CHEMOKINE CXCL13. Antigens, CD185,CD185 Antigens,CXC Chemokine Receptor 5,CXCR5 Receptors,Burkitt Lymphoma Receptor 1
D018858 Germinal Center The activated center of a lymphoid follicle in secondary lymphoid tissue where B-LYMPHOCYTES are stimulated by antigens and helper T cells (T-LYMPHOCYTES, HELPER-INDUCER) are stimulated to generate memory cells. Center, Germinal,Centers, Germinal,Germinal Centers

Related Publications

Samuel Alsén, and Jakob Cervin, and Yaxiong Deng, and Louis Szeponik, and Ulf Alexander Wenzel, and Joakim Karlsson, and Helena Cucak, and Megan Livingston, and David Bryder, and Qianjin Lu, and Bengt Johansson-Lindbom, and Ulf Yrlid
August 1986, Proceedings of the National Academy of Sciences of the United States of America,
Samuel Alsén, and Jakob Cervin, and Yaxiong Deng, and Louis Szeponik, and Ulf Alexander Wenzel, and Joakim Karlsson, and Helena Cucak, and Megan Livingston, and David Bryder, and Qianjin Lu, and Bengt Johansson-Lindbom, and Ulf Yrlid
October 1987, Immunological reviews,
Samuel Alsén, and Jakob Cervin, and Yaxiong Deng, and Louis Szeponik, and Ulf Alexander Wenzel, and Joakim Karlsson, and Helena Cucak, and Megan Livingston, and David Bryder, and Qianjin Lu, and Bengt Johansson-Lindbom, and Ulf Yrlid
July 2019, The Journal of clinical investigation,
Samuel Alsén, and Jakob Cervin, and Yaxiong Deng, and Louis Szeponik, and Ulf Alexander Wenzel, and Joakim Karlsson, and Helena Cucak, and Megan Livingston, and David Bryder, and Qianjin Lu, and Bengt Johansson-Lindbom, and Ulf Yrlid
September 1995, Biophysical journal,
Samuel Alsén, and Jakob Cervin, and Yaxiong Deng, and Louis Szeponik, and Ulf Alexander Wenzel, and Joakim Karlsson, and Helena Cucak, and Megan Livingston, and David Bryder, and Qianjin Lu, and Bengt Johansson-Lindbom, and Ulf Yrlid
February 1986, Journal of immunology (Baltimore, Md. : 1950),
Samuel Alsén, and Jakob Cervin, and Yaxiong Deng, and Louis Szeponik, and Ulf Alexander Wenzel, and Joakim Karlsson, and Helena Cucak, and Megan Livingston, and David Bryder, and Qianjin Lu, and Bengt Johansson-Lindbom, and Ulf Yrlid
January 1989, Contributions to microbiology and immunology,
Samuel Alsén, and Jakob Cervin, and Yaxiong Deng, and Louis Szeponik, and Ulf Alexander Wenzel, and Joakim Karlsson, and Helena Cucak, and Megan Livingston, and David Bryder, and Qianjin Lu, and Bengt Johansson-Lindbom, and Ulf Yrlid
August 2004, Cellular signalling,
Samuel Alsén, and Jakob Cervin, and Yaxiong Deng, and Louis Szeponik, and Ulf Alexander Wenzel, and Joakim Karlsson, and Helena Cucak, and Megan Livingston, and David Bryder, and Qianjin Lu, and Bengt Johansson-Lindbom, and Ulf Yrlid
February 2011, Current opinion in immunology,
Samuel Alsén, and Jakob Cervin, and Yaxiong Deng, and Louis Szeponik, and Ulf Alexander Wenzel, and Joakim Karlsson, and Helena Cucak, and Megan Livingston, and David Bryder, and Qianjin Lu, and Bengt Johansson-Lindbom, and Ulf Yrlid
January 1993, European journal of immunology,
Samuel Alsén, and Jakob Cervin, and Yaxiong Deng, and Louis Szeponik, and Ulf Alexander Wenzel, and Joakim Karlsson, and Helena Cucak, and Megan Livingston, and David Bryder, and Qianjin Lu, and Bengt Johansson-Lindbom, and Ulf Yrlid
December 2003, Immunology,
Copied contents to your clipboard!