Structure‐function relationship and immunochemical mapping of external and intracellular antigenic sites on the lymphocyte activation inducer molecule, AIM/CD69
- 1 October 1991
- journal article
- research article
- Published by Wiley in European Journal of Immunology
- Vol. 21 (10) , 2317-2325
- https://doi.org/10.1002/eji.1830211005
Abstract
Human activation inducer molecule (AIM/CD69), a dimeric glycoprotein structure of 33 and 27 kDa, is the earliest inducible cell surface antigen expressed during lymphocyte activation and is implicated in the induction of T and B cell proliferative responses. Cross‐competition monoclonal antibodies (mAb) binding assays have allowed the definition of four antigenic epitopes. Three of them (antigenic sites El‐3) are extracellular while the fourth (site I) is a sequential epitope localized intracellularly and highly conserved interspecies. Site E1 is shown to be an immunodominant antigenic determinant closely related to a functional domain of AIM important for triggering of T cell proliferation. Studies of peptide fragmentation of the two isolated AIM subunits with different proteases have demonstrated that both AIM chains are differentially glycosylated forms of a single 24‐kDa core protein. Moreover, the two denatured and isolated AIM chains share common epitope(s) as demonstrated by their reactivity with an mAb by both Western blot analysis and immunoprecipitation of the separated AIM subunits. Biosynthesis studies revealed the rapid appearance of two intermediate precursor forms of 29 and 26 kDa which arise from the 24‐kDa unglycosylated AIM polypeptide. This 24‐kDa unglycosylated form could be also precipitated from iodinated cells pretreated with tunicamycin, indicating that glycosylation of the protein was neither required for AIM cell surface expression nor for acquisition of external epitopes E1‐E3. Cell treatment with pronase resulted in the loss of the external epitopes E1‐3 and the generation of a proteolytic peptide of 16 kDa that could be precipitated by the anti‐AIM mAb specific for the internal site I. This proteolytic fragment retained the transmem‐brane and cytoplasmic regions of the molecule where both epitope I and phosphorylation sites reside. These results demonstrate that AIM is an integral membrane homodimeric glycoprotein with a large cytoplasmic domain probably involved in the activation signals transduced through this molecule to lymphocytes.Keywords
This publication has 25 references indexed in Scilit:
- Transmission of Signals from the T Lymphocyte Antigen Receptor to the Genes Responsible for Cell Proliferation and Immune Function: The Missing LinkAnnual Review of Immunology, 1990
- Role of the CD28 receptor in T-cell activationImmunology Today, 1990
- Biochemical and antigenic characterization of CD45 polypeptides expressed on plasma membrane and internal granules of human neutrophilsFEBS Letters, 1989
- Expression and function of AIM, an activation inducer molecule of human lymphocytes, is dependent on the activation of protein kinase CEuropean Journal of Immunology, 1989
- Human T cell activation. IV. T cell activation and proliferation via the early activation antigen EA 1.The Journal of Experimental Medicine, 1989
- Triggering of T cell proliferation through AIM, an activation inducer molecule expressed on activated human lymphocytes.The Journal of Experimental Medicine, 1988
- Interleukin 2 activation of natural killer cells rapidly induces the expression and phosphorylation of the Leu-23 activation antigen.The Journal of Experimental Medicine, 1988
- Functional modifications of cytotoxic T-lymphocyte T200 glycoprotein recognized by monoclonal antibodiesNature, 1985
- A human leukocyte differentiation antigen family with distinct alpha-subunits and a common beta-subunit: the lymphocyte function-associated antigen (LFA-1), the C3bi complement receptor (OKM1/Mac-1), and the p150,95 molecule.The Journal of Experimental Medicine, 1983
- Simultaneous flow cytometric analysis of human T cell activation antigen expression and DNA content.The Journal of Experimental Medicine, 1983