The goal of this research effort is to understand how an important type of white blood cell, called a T lymphocyte, recognizes the presence of a microorganism or cancer cell in the body, or inappropriately recognizes a normal component of the body (an """"""""auto-antigen""""""""). This research tries to provide a detailed understanding of how the substances (antigens) making up these microorganisms, cancer cells, or normal self-components, are made visible to the defending T cells or the auto-reactive T cells. We have examined the structure and function of special cellular proteins called major histocompatibility complex (MHC) molecules that are essential for antigens to be recognized by T cells. Our previous work has described the events within a cell that bring together the antigen and MHC molecule and the cellular distribution of antigenic complexes within the body (antigen processing and presentation). By understanding these events, we will be able to identify the most important components of microorganisms or cancer cells to use in protective or therapeutic vaccines and how best deliver these substances to stimulate an effective immune response. We have made several advances in the past year. We have applied our new method for the direct microscopic visualization in real time of the interactions of T cells and antigen presenting cells in intact lymphoid tissue, showing that individual T cells bind stably to antigen-bearing dendritic cells for as long as 15 hrs. before activation-associated events lead to dissociation of the cell pairs and rapid migration of the T cells in the lymphoid tissue. Immunological synapses have been visualized in vivo as has clonal cell division. Using high efficient methods for retroviral transduction of dendritic cells grown ex vivo, we have been able to modify the function of these key antigen presenting cells and to show that a particular signaling molecule called Traf6 plays a unique role in CD40-dependent signaling for secretion of the cytokine IL-12 that has a central role in inflammatory-type (Th1) T-cell responses.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Intramural Research (Z01)
Project #
1Z01AI000545-14
Application #
6661028
Study Section
(LI)
Project Start
Project End
Budget Start
Budget End
Support Year
14
Fiscal Year
2002
Total Cost
Indirect Cost
Name
Niaid Extramural Activities
Department
Type
DUNS #
City
State
Country
United States
Zip Code
Bajenoff, Marc; Germain, Ronald N (2009) B cell follicle development remodels the conduit system and allows soluble antigen delivery to follicular dendritic cells. Blood :
Bajenoff, Marc; Glaichenhaus, Nicolas; Germain, Ronald N (2008) Fibroblastic reticular cells guide T lymphocyte entry into and migration within the splenic T cell zone. J Immunol 181:3947-54
Germain, Ronald N; Bajenoff, Marc; Castellino, Flora et al. (2008) Making friends in out-of-the-way places: how cells of the immune system get together and how they conduct their business as revealed by intravital imaging. Immunol Rev 221:163-81
Egen, Jackson G; Rothfuchs, Antonio Gigliotti; Feng, Carl G et al. (2008) Macrophage and T cell dynamics during the development and disintegration of mycobacterial granulomas. Immunity 28:271-84
Guarda, Greta; Hons, Miroslav; Soriano, Silvia F et al. (2007) L-selectin-negative CCR7- effector and memory CD8+ T cells enter reactive lymph nodes and kill dendritic cells. Nat Immunol 8:743-52
Bajenoff, Marc; Egen, Jackson G; Qi, Hai et al. (2007) Highways, byways and breadcrumbs: directing lymphocyte traffic in the lymph node. Trends Immunol 28:346-52
Bajenoff, Marc; Germain, Ronald N (2007) Seeing is believing: a focus on the contribution of microscopic imaging to our understanding of immune system function. Eur J Immunol 37 Suppl 1:S18-33
Castellino, Flora; Germain, Ronald N (2007) Chemokine-guided CD4+ T cell help enhances generation of IL-6RalphahighIL-7Ralpha high prememory CD8+ T cells. J Immunol 178:778-87
Bajenoff, Marc; Egen, Jackson G; Koo, Lily Y et al. (2006) Stromal cell networks regulate lymphocyte entry, migration, and territoriality in lymph nodes. Immunity 25:989-1001
Qi, Hai; Egen, Jackson G; Huang, Alex Y C et al. (2006) Extrafollicular activation of lymph node B cells by antigen-bearing dendritic cells. Science 312:1672-6

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