Major histocompatibility complex (MHC) class II molecules can present peptides derived from two different sources. The predominant source of peptide in uninfected antigen presenting cells (APCs) is from self-proteins that are synthesized within the cell and traffic through the MHC class II compartment. The other source of antigen is endocytosed proteins, which includes both self- and foreign proteins. Foreign protein antigens generate adaptive immune responses, whereas self-peptides stabilize the MHC class II heterodimer on the cell surface, allowing positive and negative selection of thymocytes. Therefore, self-antigens play an important normal role in shaping the T cell receptor repertoire as well as a pathological role in autoimmunity. To determine whether processing and presentation of self-antigens by MHC class II molecules differs depending on whether the antigen is supplied through synthesis within the cell or by endocytosis, we used a T cell clone against an Eα peptide presented by I-Ab to show that processing through these two routes can differ. We also show that mice can be tolerant to the epitope formed through the endogenous route, but responsive to the epitope that can be formed through endocytosis. This suggests that negative selection occurs primarily against antigens that are synthesized within the APC, and that endocytosed self-antigens could serve as autoantigens. Finally, we also demonstrate that lipopolysaccharide-activated B cells are defective for uptake, processing, and presentation of this self-antigen, and that this correlates with the increased expression of the costimulatory molecules B7.1 and B7.2. This may provide a model for studying the onset of an autoimmune response.
Skip Nav Destination
Article navigation
4 May 1998
Article|
May 04 1998
Exogenously Provided Peptides of a Self-antigen Can Be Processed into Forms that Are Recognized by Self–T Cells
Avlin K. Barlow,
Avlin K. Barlow
Section of Immunobiology, Yale University School of Medicine, and Howard Hughes Medical Institute, New Haven, Connecticut 06510
Search for other works by this author on:
Xin He,
Xin He
Section of Immunobiology, Yale University School of Medicine, and Howard Hughes Medical Institute, New Haven, Connecticut 06510
Search for other works by this author on:
Charles Janeway, Jr.
Charles Janeway, Jr.
Section of Immunobiology, Yale University School of Medicine, and Howard Hughes Medical Institute, New Haven, Connecticut 06510
Search for other works by this author on:
Avlin K. Barlow
Section of Immunobiology, Yale University School of Medicine, and Howard Hughes Medical Institute, New Haven, Connecticut 06510
Xin He
Section of Immunobiology, Yale University School of Medicine, and Howard Hughes Medical Institute, New Haven, Connecticut 06510
Charles Janeway, Jr.
Section of Immunobiology, Yale University School of Medicine, and Howard Hughes Medical Institute, New Haven, Connecticut 06510
Address correspondence to Charles A. Janeway, Jr., Section of Immunology, Yale University School of Medicine, 310 Cedar St., LH416, Box 208011, New Haven, CT 06520. Phone: 203-785-2793; Fax: 203-737-1765; E-mail: [email protected]
A.K. Barlow's present address is Albert Einstein College of Medicine, 1300 Morris Park Ave., Bronx, NY 10461.
2
Viret, C., H. Ramaswamy, D.B. Sant'Angelo, and C.A. Janeway, Jr., manuscript submitted for publication.
Received:
June 09 1997
Revision Received:
February 04 1998
Online ISSN: 1540-9538
Print ISSN: 0022-1007
1998
J Exp Med (1998) 187 (9): 1403–1415.
Article history
Received:
June 09 1997
Revision Received:
February 04 1998
Citation
Avlin K. Barlow, Xin He, Charles Janeway; Exogenously Provided Peptides of a Self-antigen Can Be Processed into Forms that Are Recognized by Self–T Cells . J Exp Med 4 May 1998; 187 (9): 1403–1415. doi: https://doi.org/10.1084/jem.187.9.1403
Download citation file:
Sign in
Don't already have an account? Register
Client Account
You could not be signed in. Please check your email address / username and password and try again.
Could not validate captcha. Please try again.
Sign in via your Institution
Sign in via your InstitutionSuggested Content
Email alerts
Advertisement