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Properties of bispecific single chain antibodies expressed in Escherichia coli
D M Kranz1, M Gruber, E R Wilson
1Department of Biochemistry, University of Illinois, Urbana 61801, USA.
Single chain bispecific antibodies, in which the genes that encode the VH and VL regions are linked in tandem, may offer some advantages over other methods of bispecific antibody preparation. To begin to evaluate the potential of this system, a single chain bispecific antibody (scFv2) that binds to the T cell receptor of a cytotoxic T cell clone and to the hapten fluorescein was constructed. The individual scFv regions were joined by a 25 amino acid linker, and the scFv2 protein was obtained from insoluble inclusion bodies after guanidine solubilization and refolding. Fluorescein-purified scFv2 is active at concentrations of approximately 10 nM (approximately 1 microgram/ml) and above in mediating lysis of fluorescein-coupled tumor cells by the cytotoxic T lymphocytes (CTL). This system has now been used to evaluate various features of the scFv2 approach: (a) affinities of the scFv2 for the TCR and fluorescein, (b) yields of the scFv2 from several different purification schemes, (c) relationship of antigen density (i.e., fluorescein density on tumor cells) to the ability to redirect lysis of the tumor cell, and (d) relationship of scFv2 affinity for the tumor antigen to the ability to redirect lysis. This study was performed by using several analogs of fluorescein for which the scFv2 had different affinities. Results showed that it should be possible to select antibodies with appropriate affinities such that tumor cells with typical antigen densities of 10(4)-10(5) molecules per cell will be lysed and normal cells that have lower levels of the antigen will be spared.
Single chain bispecific antibodies, in which the genes that encode the VH and VL regions are linked in tandem, may offer some advantages over other methods of bispecific antibody preparation. To begin to evaluate the potential of this system, a single chain bispecific antibody (scFv2) that binds to the T cell receptor of a cytotoxic T cell clone and to the hapten fluorescein was constructed. The individual scFv regions were joined by a 25 amino acid linker, and the scFv2 protein was obtained from insoluble inclusion bodies after guanidine solubilization and refolding. Fluorescein-purified scFv2 is active at concentrations of approximately 10 nM (approximately 1 microgram/ml) and above in mediating lysis of fluorescein-coupled tumor cells by the cytotoxic T lymphocytes (CTL). This system has now been used to evaluate various features of the scFv2 approach: (a) affinities of the scFv2 for the TCR and fluorescein, (b) yields of the scFv2 from several different purification schemes, (c) relationship of antigen density (i.e., fluorescein density on tumor cells) to the ability to redirect lysis of the tumor cell, and (d) relationship of scFv2 affinity for the tumor antigen to the ability to redirect lysis. This study was performed by using several analogs of fluorescein for which the scFv2 had different affinities. Results showed that it should be possible to select antibodies with appropriate affinities such that tumor cells with typical antigen densities of 10(4)-10(5) molecules per cell will be lysed and normal cells that have lower levels of the antigen will be spared.