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Rapid Purification of Human Bispecific Antibodies via Selective Modulation of Protein A Binding.


ABSTRACT: Methods to rapidly generate high quality bispecific antibodies (BsAb) having normal half-lives are critical for therapeutic programs. Here, we identify 3 mutations (T307P, L309Q, and Q311R or "TLQ") in the Fc region of human IgG1 which disrupt interaction with protein A while enhancing interaction with FcRn. The mutations are shown to incrementally alter the pH at which a mAb elutes from protein A affinity resin. A BsAb comprised of a TLQ mutant and a wild-type IgG1 can be efficiently separated from contaminating parental mAbs by differential protein A elution starting from either a) purified parental mAbs, b) in-supernatant crossed parental mAbs, or c) co-transfected mAbs. We show that the Q311R mutation confers enhanced FcRn interaction in vitro, and Abs harboring either the Q311R or TLQ mutations have serum half-lives as long as wild-type human IgG1. The mutant Abs have normal thermal stability and Fc? receptor interactions. Together, the results lead to a method for high-throughput generation of BsAbs suitable for in vivo studies.

SUBMITTER: Zwolak A 

PROVIDER: S-EPMC5686111 | biostudies-literature | 2017 Nov

REPOSITORIES: biostudies-literature

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Rapid Purification of Human Bispecific Antibodies via Selective Modulation of Protein A Binding.

Zwolak Adam A   Leettola Catherine N CN   Tam Susan H SH   Goulet Dennis R DR   Derebe Mehabaw G MG   Pardinas Jose R JR   Zheng Songmao S   Decker Rose R   Emmell Eva E   Chiu Mark L ML  

Scientific reports 20171114 1


Methods to rapidly generate high quality bispecific antibodies (BsAb) having normal half-lives are critical for therapeutic programs. Here, we identify 3 mutations (T307P, L309Q, and Q311R or "TLQ") in the Fc region of human IgG1 which disrupt interaction with protein A while enhancing interaction with FcRn. The mutations are shown to incrementally alter the pH at which a mAb elutes from protein A affinity resin. A BsAb comprised of a TLQ mutant and a wild-type IgG1 can be efficiently separated  ...[more]

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