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1.
Eur J Immunol ; 41(4): 902-15, 2011 Apr.
Article in English | MEDLINE | ID: mdl-21416464

ABSTRACT

Members of the CD28 family play important roles in regulating T-cell functions and share a common gene structure profile. We have identified VSTM3 as a protein whose gene structure matches that of the other CD28 family members. This protein (also known as TIGIT and WUCAM) has been previously shown to affect immune responses and is expressed on NK cells, activated and memory T cells, and Tregs. The nectin-family proteins CD155 and CD112 serve as counter-structures for VSTM3, and CD155 and CD112 also bind to the activating receptor CD226 on T cells and NK cells. Hence, this group of interacting proteins forms a network of molecules similar to the well-characterized CD28-CTLA-4-CD80-CD86 network. In the same way that soluble CTLA-4 can be used to block T-cell responses, we show that soluble Vstm3 attenuates T-cell responses in vitro and in vivo. Moreover, animals deficient in Vstm3 are more sensitive to autoimmune challenges indicating that this new member of the CD28 family is an important regulator of T-cell responses.


Subject(s)
CD28 Antigens/immunology , Receptors, Immunologic/immunology , T-Lymphocytes/immunology , Animals , Autoimmune Diseases/immunology , Cells, Cultured , Dendritic Cells/immunology , Humans , Mice , Rats , Receptors, Immunologic/deficiency , T-Lymphocytes/chemistry
2.
Protein Eng Des Sel ; 23(3): 115-27, 2010 Mar.
Article in English | MEDLINE | ID: mdl-20022918

ABSTRACT

Bispecific antibodies (bsAbs) present an attractive opportunity to combine the additive and potentially synergistic effects exhibited by combinations of monoclonal antibodies (mAbs). Current challenges for engineering bsAbs include retention of the binding affinity of the parent mAb or antibody fragment, the ability to bind both targets simultaneously, and matching valency with biology. Other factors to consider include structural stability and expression of the recombinant molecule, both of which may have significant impact on its development as a therapeutic. Here, we incorporate selection of stable, potent single-chain variable fragments (scFvs) early in the engineering process to assemble bsAbs for therapeutic applications targeting the cytokines IL-17A/A and IL-23. Stable scFvs directed against human cytokines IL-23p19 and IL-17A/A were isolated from a human Fab phage display library via batch conversion of panning output from Fabs to scFvs. This strategy integrated a step for shuffling V regions during the conversion and permitted the rescue of scFv molecules in both the V(H)V(L) and the V(L)V(H) orientations. Stable scFvs were identified and assembled into several bispecific formats as fusions to the Fc domain of human IgG1. The engineered bsAbs are potent neutralizers of the biological activity of both cytokines (IC(50) < 1 nM), demonstrate the ability to bind both target ligands simultaneously and display stability and productivity advantageous for successful manufacture of a therapeutic molecule. Pharmacokinetic analysis of the bsAbs in mice revealed serum half-lives similar to human mAbs. Assembly of bispecific molecules using stable antibody fragments offers an alternative to reformatting mAbs and minimizes subsequent structure-related and manufacturing concerns.


Subject(s)
Antibodies, Bispecific/genetics , Antibodies, Bispecific/immunology , Interleukin-17/immunology , Interleukin-23/immunology , Protein Engineering , Animals , Antibodies, Bispecific/chemistry , Antibodies, Bispecific/pharmacokinetics , Antibodies, Monoclonal/chemistry , Antibodies, Monoclonal/immunology , Antibody Affinity , Databases, Protein , Escherichia coli/genetics , Female , Half-Life , Humans , Kinetics , Mice , Protein Stability , Single-Chain Antibodies/chemistry , Single-Chain Antibodies/genetics , Single-Chain Antibodies/immunology , Single-Chain Antibodies/metabolism
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