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Abstract
Generation of bispecific antibodies (bsAbs) requires a combination of compatible binders in formats that support desired functionalities. Here, we report that bsAb-matrices can be generated by Format Chain Exchange (FORCE), enabling screening of combinatorial binder/format spaces. Input molecules for generation of bi/multi-valent bsAbs are monospecific entities similar to knob-into-hole half-antibodies, yet with complementary CH3-interface-modulated and affinity-tagged dummy-chains. These contain mutations that lead to limited interface repulsions without compromising expression or biophysical properties of educts. Mild reduction of combinations of educts triggers spontaneous chain-exchange reactions driven by partially flawed CH3-educt interfaces resolving to perfect complementarity. This generates large bsAb matrices harboring different binders in multiple formats. Benign bio-physical properties and good expression yields of educts, combined with simplicity of purification enables process automation. Examples that demonstrate the relevance of screening binder/format combinations are provided as a matrix of bsAbs that simultaneously bind Her1/Her2 and DR5 without encountering binder or format-inflicted interferences.
Publisher
Nature Communications
Published On
Oct 02, 2020
Authors
Stefan Dengl, Klaus Mayer, Felix Bormann, Harald Duerr, Eike Hoffmann, Bianca Nussbaum, Michael Tischler, Martina Wagner, Andreas Kuglstatter, Lea Leibrock, Can Buldun, Guy Georges, Ulrich Brinkmann
Tags
bispecific antibodies
Format Chain Exchange
combinatorial binders
affinity-tagged chains
HER1/HER2
DR5
bio-physical properties
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