Scientific Reports (Jun 2017)

RF1 attenuation enables efficient non-natural amino acid incorporation for production of homogeneous antibody drug conjugates

  • Gang Yin,
  • Heather T. Stephenson,
  • Junhao Yang,
  • Xiaofan Li,
  • Stephanie M. Armstrong,
  • Tyler H. Heibeck,
  • Cuong Tran,
  • Mary Rose Masikat,
  • Sihong Zhou,
  • Ryan L. Stafford,
  • Alice Y. Yam,
  • John Lee,
  • Alexander R. Steiner,
  • Avinash Gill,
  • Kalyani Penta,
  • Sonia Pollitt,
  • Ramesh Baliga,
  • Christopher J. Murray,
  • Christopher D. Thanos,
  • Leslie M. McEvoy,
  • Aaron K. Sato,
  • Trevor J. Hallam

DOI
https://doi.org/10.1038/s41598-017-03192-z
Journal volume & issue
Vol. 7, no. 1
pp. 1 – 13

Abstract

Read online

Abstract Amber codon suppression for the insertion of non-natural amino acids (nnAAs) is limited by competition with release factor 1 (RF1). Here we describe the genome engineering of a RF1 mutant strain that enhances suppression efficiency during cell-free protein synthesis, without significantly impacting cell growth during biomass production. Specifically, an out membrane protease (OmpT) cleavage site was engineered into the switch loop of RF1, which enables its conditional inactivation during cell lysis. This facilitates extract production without additional processing steps, resulting in a scaleable extract production process. The RF1 mutant extract allows nnAA incorporation at previously intractable sites of an IgG1 and at multiple sites in the same polypeptide chain. Conjugation of cytotoxic agents to these nnAAs, yields homogeneous antibody drug conjugates (ADCs) that can be optimized for conjugation site, drug to antibody ratio (DAR) and linker-warheads designed for efficient tumor killing. This platform provides the means to generate therapeutic ADCs inaccessible by other methods that are efficient in their cytotoxin delivery to tumor with reduced dose-limiting toxicities and thus have the potential for better clinical impact.