Optimization of an Enzymatic Antibody-Drug Conjugation Approach Based on Coenzyme A Analogs

التفاصيل البيبلوغرافية
العنوان: Optimization of an Enzymatic Antibody-Drug Conjugation Approach Based on Coenzyme A Analogs
المؤلفون: Jan Grünewald, Weijia Ou, Huanfang Zhou, Tetsuo Uno, Xing Wang, Heath E. Klock, Eric C. Peters, Jessica Read, Ansgar Brock, Julie Vance, Jin Yunho, Yongqin Wan, Bernhard H. Geierstanger
المصدر: Bioconjugate chemistry. 28(7)
سنة النشر: 2017
مصطلحات موضوعية: 0301 basic medicine, Immunoconjugates, Stereochemistry, Coenzyme A, Biomedical Engineering, Pharmaceutical Science, Bioengineering, Peptide, 01 natural sciences, 03 medical and health sciences, chemistry.chemical_compound, Mice, Structure-Activity Relationship, Drug Stability, Structure–activity relationship, Animals, Aminobenzoates, Pharmacology, chemistry.chemical_classification, 010405 organic chemistry, Chemistry, Cytotoxins, Organic Chemistry, Antibodies, Monoclonal, 0104 chemical sciences, Amino acid, 030104 developmental biology, Phosphopantetheine, Bioorthogonal chemistry, Linker, Oligopeptides, Biotechnology, Conjugate
الوصف: Phosphopantetheine transferases (PPTases) can be used to efficiently prepare site-specific antibody-drug conjugates (ADCs) by enzymatically coupling coenzyme A (CoA)-linker payloads to 11-12 amino acid peptide substrates inserted into antibodies. Here, a two-step strategy is established wherein in a first step, CoA analogs with various bioorthogonal reactivities are enzymatically installed on the antibody for chemical conjugation with a cytotoxic payload in a second step. Because of the high structural similarity of these CoA analogs to the natural PPTase substrate CoA-SH, the first step proceeds very efficiently and enables the use of peptide tags as short as 6 amino acids compared to the 11-12 amino acids required for efficient one-step coupling of the payload molecule. Furthermore, two-step conjugation provides access to diverse linker chemistries and spacers of varying lengths. The potency of the ADCs was largely independent of linker architecture. In mice, proteolytic cleavage was observed for some C-terminally linked auristatin payloads. The in vivo stability of these ADCs was significantly improved by reduction of the linker length. In addition, linker stability was found to be modulated by attachment site, and this, together with linker length, provides an opportunity for maximizing ADC stability without sacrificing potency.
تدمد: 1520-4812
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::63bd99ba14848ee5878640e2a238e6d3
https://pubmed.ncbi.nlm.nih.gov/28590752
رقم الانضمام: edsair.doi.dedup.....63bd99ba14848ee5878640e2a238e6d3
قاعدة البيانات: OpenAIRE