Structure- and sequence-based design of synthetic single-domain antibody libraries

Author:

Sevy Alexander M1ORCID,Chen Ming-Tang1,Castor Michelle1,Sylvia Tyler1,Krishnamurthy Harini2,Ishchenko Andrii2,Hsieh Chung-Ming1

Affiliation:

1. Discovery Biologics, Merck & Co., Inc., Boston, MA 02115, USA

2. Computational and Structural Chemistry, Merck & Co., Inc., West Point, PA 19486, USA

Abstract

Abstract Single-domain antibody fragments known as VHH have emerged in the pharmaceutical industry as useful biotherapeutics. These molecules, which are naturally produced by camelids, share the characteristics of high affinity and specificity with traditional human immunoglobulins, while consisting of only a single heavy chain. Currently, the most common method for generating VHH is via animal immunization, which can be costly and time-consuming. Here we describe the development of a synthetic VHH library for in vitro selection of single domain binders. We combine structure-based design and next-generation sequencing analysis to build a library with characteristics that closely mimic the natural repertoire. To validate the performance of our synthetic library, we isolated VHH against three model antigens (soluble mouse PD-1 ectodomain, amyloid-β peptide, and MrgX1 GPCR) of different sizes and characteristics. We were able to isolate diverse binders targeting different epitopes with high affinity (as high as 5 nM) against all three targets. We then show that anti-mPD-1 binders have functional activity in a receptor blocking assay.

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Biochemistry,Bioengineering,Biotechnology

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