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Merck
CN
  • Serum albumin binding knob domains engineered within a VH framework III bispecific antibody format and as chimeric peptides.

Serum albumin binding knob domains engineered within a VH framework III bispecific antibody format and as chimeric peptides.

Frontiers in immunology (2023-05-30)
Ralph Adams, Callum Joyce, Mikhail Kuravskiy, Katriona Harrison, Zainab Ahdash, Matthew Balmforth, Kelda Chia, Cinzia Marceddu, Matthew Coates, James Snowden, Emmanuel Goursaud, Karelle Ménochet, Jean van den Elsen, Richard J Payne, Alastair D G Lawson, Anthony Scott-Tucker, Alex Macpherson
摘要

Serum albumin binding is an established mechanism to extend the serum half-life of antibody fragments and peptides. The cysteine rich knob domains, isolated from bovine antibody ultralong CDRH3, are the smallest single chain antibody fragments described to date and versatile tools for protein engineering. Here, we used phage display of bovine immune material to derive knob domains against human and rodent serum albumins. These were used to engineer bispecific Fab fragments, by using the framework III loop as a site for knob domain insertion. By this route, neutralisation of the canonical antigen (TNFα) was retained but extended pharmacokinetics in-vivo were achieved through albumin binding. Structural characterisation revealed correct folding of the knob domain and identified broadly common but non-cross-reactive epitopes. Additionally, we show that these albumin binding knob domains can be chemically synthesised to achieve dual IL-17A neutralisation and albumin binding in a single chemical entity. This study enables antibody and chemical engineering from bovine immune material, via an accessible discovery platform.

材料
Product Number
品牌
产品描述

Sigma-Aldrich
白蛋白 来源于人类血清, lyophilized powder, ≥96% (agarose gel electrophoresis)
Sigma-Aldrich
胰蛋白酶 来源于猪胰腺, Proteomics Grade, BioReagent, Dimethylated