Humanization of rabbit antibodies using a universal antibody framework
View Patent ↗The present invention relates to an universal antibody acceptor framework and to methods for grafting non-human antibodies, e.g., rabbit antibodies, using a universal antibody acceptor framework. Antibodies generated by the methods of the invention are useful in a variety of diagnostic and therapeutic applications.
1. A method of providing a human variable heavy chain acceptor framework for the grafting of lagomorph heavy chain CDRs, comprising changing the amino acid at one or more of positions 24, 56, 84, 89 and 108 (AHo numbering) of a human variable heavy chain framework sequence so that the resulting framework sequence comprises at least four of the following amino acids: threonine (T) at position 24, alanine (A) or glycine (G) at position 56, threonine (T) at position 84, valine (V) at position 89, and arginine (R) at position 108 (AHo numbering), whereby the resulting human variable heavy chain acceptor framework is an acceptor for the heavy chain CDRs from a donor lagomorph immunobinder.
2. The method of claim 1 , wherein the amino acid sequence of the variable heavy chain framework is at least 85% identical to SEQ ID NO: 4.
3. The method of claim 1 , wherein said variable heavy chain framework comprises threonine (T) at position 24 (AHo numbering).
4. The method of claim 1 , wherein said variable heavy chain framework comprises threonine (T) at position 84 (AHo numbering).
5. The method of claim 1 , wherein said variable heavy chain framework comprises valine (V) at position 89 (AHo numbering).
6. The method of claim 1 , wherein said variable heavy chain framework further comprises at least one of the following amino acids: Serine (S) at position 12; Serine (S) or Threonine (T) at position 103; and Serine (S) or Threonine (T) at position 144 (AHo numbering).
7. The method of claim 1 , wherein said variable heavy chain framework further comprises Glycine (G) at position 141 (AHo numbering).
8. An immunobinder comprising a variable light chain and a variable heavy chain, wherein the variable heavy chain comprises the human acceptor variable heavy chain framework produced by the method of claim 1 .