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Generation of high-affinity human antibodies by combining donor-derived and synthetic complementarity-determining-region diversity.
- Source :
-
Nature biotechnology [Nat Biotechnol] 2005 Mar; Vol. 23 (3), pp. 344-8. Date of Electronic Publication: 2005 Feb 20. - Publication Year :
- 2005
-
Abstract
- Combinatorial libraries of rearranged hypervariable V(H) and V(L) sequences from nonimmunized human donors contain antigen specificities, including anti-self reactivities, created by random pairing of V(H)s and V(L)s. Somatic hypermutation of immunoglobulin genes, however, is critical in the generation of high-affinity antibodies in vivo and occurs only after immunization. Thus, in combinatorial phage display libraries from nonimmunized donors, high-affinity antibodies are rarely found. Lengthy in vitro affinity maturation is often needed to improve antibodies from such libraries. We report the construction of human Fab libraries having a unique combination of immunoglobulin sequences captured from human donors and synthetic diversity in key antigen contact sites in heavy-chain complementarity-determining regions 1 and 2. The success of this strategy is demonstrated by identifying many monovalent Fabs against multiple therapeutic targets that show higher affinities than approved therapeutic antibodies. This very often circumvents the need for affinity maturation, accelerating discovery of antibody drug candidates.
- Subjects :
- Genetic Variation genetics
Humans
Immunoglobulin Fab Fragments genetics
Protein Binding
Recombination, Genetic genetics
Tissue Donors
Antibody Affinity
Antibody Formation
Complementarity Determining Regions genetics
Immunoglobulin Fab Fragments biosynthesis
Immunoglobulin Fab Fragments immunology
Peptide Library
Protein Engineering methods
Subjects
Details
- Language :
- English
- ISSN :
- 1087-0156
- Volume :
- 23
- Issue :
- 3
- Database :
- MEDLINE
- Journal :
- Nature biotechnology
- Publication Type :
- Editorial & Opinion
- Accession number :
- 15723048
- Full Text :
- https://doi.org/10.1038/nbt1067