TY - JOUR
T1 - Blockade of T cell activation using a surface-linked single-chain antibody to CTLA-4 (CD152)
AU - Griffin, Matthew D.
AU - Hong, David K.
AU - Holman, Philmore O.
AU - Lee, Kyung Mi
AU - Whitters, Matthew J.
AU - O'Herrin, Sean M.
AU - Fallarino, Francesca
AU - Collins, Mary
AU - Segal, David M.
AU - Gajewski, Thomas F.
AU - Kranz, David M.
AU - Bluestone, Jeffrey A.
PY - 2000/5/1
Y1 - 2000/5/1
N2 - CTLA-4 (CD152) engagement can down-regulate T cell activation and promote the induction of immune tolerance. However, the strategy of attenuating T cell activation by engaging CTLA-4 has been limited by sharing of its natural ligands with the costimulatory protein CD28. In the present study, a CTLA-4-specific single-chain Ab (scFv) was developed and expressed on the cell surface to promote selective engagement of this regulatory molecule. Transfectants expressing anti-CTLA-4 scfv at their surface bound soluble CTLA-4 but not soluble CD28. Coexpression of anti-CTLA-4 scfv with anti-CD3ε anti-CD28 scFvs on artificial APCs reduced the proliferation and IL.2 production by resting and preactivated bulk T cells as well as CD4+ and CD8+ T cell subsets. Importantly, expression of anti-CTLA-4 ssFv on the same cell surface as the TCR ligand was essential for the inhibitory effects of CTLA-4-specific ligation. CTLA-4-mediated inhibition of tyrosine phosphorylation of components of the proximal TCR signaling apparatus was similarly dependent on coexpression of TCR and CTLA-4 ligands on the same surface. These findings support a predominant role for CTLA-4 function in the modification of the proximal TCR signal. Using T cells from DO11.10 and 2C TCR transgenic mice, negative regulatory effects of selective CTLA-4 ligation were also demonstrated during the stimulation of Ag-specific CD4+ anti CD8+ T cells by MHC/peptide complexes. Together these studies demonstrate that selective ligation of CTLA-4 using a membrane-bound scfv results in attenuated T cell responses only when coengaged with the TCR during T cell/APC interaction and define an approach to harnessing the immunomodulatory potential of CTLA-4-specific ligation.
AB - CTLA-4 (CD152) engagement can down-regulate T cell activation and promote the induction of immune tolerance. However, the strategy of attenuating T cell activation by engaging CTLA-4 has been limited by sharing of its natural ligands with the costimulatory protein CD28. In the present study, a CTLA-4-specific single-chain Ab (scFv) was developed and expressed on the cell surface to promote selective engagement of this regulatory molecule. Transfectants expressing anti-CTLA-4 scfv at their surface bound soluble CTLA-4 but not soluble CD28. Coexpression of anti-CTLA-4 scfv with anti-CD3ε anti-CD28 scFvs on artificial APCs reduced the proliferation and IL.2 production by resting and preactivated bulk T cells as well as CD4+ and CD8+ T cell subsets. Importantly, expression of anti-CTLA-4 ssFv on the same cell surface as the TCR ligand was essential for the inhibitory effects of CTLA-4-specific ligation. CTLA-4-mediated inhibition of tyrosine phosphorylation of components of the proximal TCR signaling apparatus was similarly dependent on coexpression of TCR and CTLA-4 ligands on the same surface. These findings support a predominant role for CTLA-4 function in the modification of the proximal TCR signal. Using T cells from DO11.10 and 2C TCR transgenic mice, negative regulatory effects of selective CTLA-4 ligation were also demonstrated during the stimulation of Ag-specific CD4+ anti CD8+ T cells by MHC/peptide complexes. Together these studies demonstrate that selective ligation of CTLA-4 using a membrane-bound scfv results in attenuated T cell responses only when coengaged with the TCR during T cell/APC interaction and define an approach to harnessing the immunomodulatory potential of CTLA-4-specific ligation.
UR - http://www.scopus.com/inward/record.url?scp=10744233636&partnerID=8YFLogxK
U2 - 10.4049/jimmunol.164.9.4433
DO - 10.4049/jimmunol.164.9.4433
M3 - Article
C2 - 10779742
AN - SCOPUS:10744233636
SN - 0022-1767
VL - 164
SP - 4433
EP - 4442
JO - Journal of Immunology
JF - Journal of Immunology
IS - 9
ER -