Nova Patents
IL194145A

Engineered heterodimeric protein domains

Abstract

This record has no abstract on file.

IL194145A, drawing sheet 1
Sheet 1 of 18

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

19 claims: 9 independent, 10 dependent

  1. 1
    A multidomain protein comprising at least a first and a second nonidentical engineered domain, each of the first and the second engineered domain containing a protein-protein interaction interface comprising amino acid sequence segments 5 derived from two or more naturally occurring homologous parent domains, thereby conferring on said first and second engineered domains assembly specificities distinct from assembly specificities of the parent domains, wherein the first and second engineered domains form heterodimers with one another preferentially over forming homodimers. 10
  2. 6
    The multidomain protein of any of the claims 1 - 5, wherein the first and second 20 engineered domains are part of polypeptide chains that are associated by a disulfide bond.
  3. 7
    The multidomain protein of any of the claims 1 - 6, wherein one of the first and second engineered domains comprises at least two non-adjacent sequence segments derived from the same parent domain. 25
  4. 8
    The multidomain protein of any of the claims 1 - 7, wherein each of the amino acid sequence segments comprises two or more amino acids.
  5. 9
    The multidomain protein of any of the claims 1 - 8, wherein the protein-protein interaction interface of the first engineered domain comprises at least two amino acids from each parent domain.
  6. 10
    The multidomain protein of any of the claims 1 - 9, wherein the multidomain 5 protein comprises a first bio-active domain.
  7. 13
    The multidomain protein of any of the claims 10-12, wherein the second bioactive domain occupies a position C-terminal of the first engineered domain.
  8. 14
    The multidomain protein of any of the claims 10-13, wherein the first bio-active domain comprises an antibody variable domain.
  9. 16
    A method of colocalizing bio-active domains when administered to a biological system, the method comprising the step of administering to the biological system the multimeric protein of claim 16. 20 17. The method of claim 16, wherein the biological system is a mammal. A multidomain protein comprising at least first and second nonidentical engineered domains that meet at an interface, the interface of each of the first and second engineered domains comprising at least two amino acid sequence segments, each derived from a different naturally-occurring homologous parent 25 domain, thereby conferring a assembly specificity distinct from the assembly specificity of the parent domains, wherein the first and second engineered domains form heterodimers with one another preferentially over forming homodimers. /19. A multidomain protein comprising at least first and second nonidentical engineered domains that meet at an interface, wherein (1) the first and second engineered domains are derived from two or more naturally-occurring homologous parent domains, (2) the interface from the first engineered domain 5 comprises at least one amino acid sequence segment interacting with an amino acid sequence segment on the interface of the second engineered domain derived from the same parent domain, and (3) the first and second engineered domains form heterodimers with one another preferentially over forming homodimers.
  10. 17
    20. A multimeric protein comprising 10 (i) a domain with an amino acid sequence derived from two or more homologous parent domains;(ii) an interaction surface on said domain that mediates multimerization and that comprises amino acids derived from more than one of said parent domains;and wherein the specificity of multimerization is enhanced by the presence of 15 amino acids from different parent domains.
  11. 19
    22. A heterodimeric engineered immunoglobulin molecule, comprising a first 20 naturally occurring immunoglobulin chain derived from a first member of the immunoglobulin superfamily and a second naturally occurring immunoglobulin chain derived from a second different member of the immunoglobulin family, wherein each of the immunoglobulin chains comprises a bio-active domain, which is not an antibody variable region and comprises a protein-protein interface 25 domain, that comprises complementary amino acid segments from the other immunoglobulin superfamily chain; said protein-protein interface of the first chain is interacting with the protein-protein interface domain of the second chain by homodimerization of the corresponding amino acid segments derived from the same immunoglobulin superfamily within said interaction domains. A heterodimeric engineered immunoglobulin molecule of claim 22, wherein the bio-active domain is an antibody CH3 domain, a CH2-CH3 domain or a CH1-CH2-CH3 domain. 23. 24. A heterodimeric engineered immunoglobulin molecule of claim 23, wherein the bio-active domain is an antibody CH3 domain. A nucleic acid encoding a multidomain protein comprising at least first and second nonidentical engineered domains, each of the first and second engineered domains containing protein-protein interaction interface comprising amino acid sequence segments derived from two or more naturally occurring homologous parent domains, thereby conferring assembly specificities of said first and second engineered domains distinct from assembly specificities of the parent domains, wherein (1) the first and second engineered domains form heterodimers with one another preferentially over forming homodimers, and (2) the first and second engineered domains are not antibody variable domains. 26. A cell comprising the nucleic acid of claim 25. 27. A nucleic acid encoding the multimeric protein of any of the claims 1 - 24. A method of designing a multidomain protein with domains that preferentially heterodimerize, the method comprising the steps of:(a) selecting a first polypeptide, a second polypeptide, a third polypeptide and a fourth polypeptide, wherein the first and third polypeptides dimerize with each other, but not with the second or fourth polypeptide, and wherein said second and fourth polypeptides dimerize with each other, (b) composing an amino acid sequence of a first domain from the first and the second polypeptides comprising at least one assembly element from the first polypeptide, and (c) composing an amino acid sequence of a second domain from the third and fourth polypeptides comprising at least one assembly element from the third polypeptide, such that the assembly elements from the first and third polypeptides assemble with each other, thereby promoting heterodimerization of the first and second domains. 29. The method of claim 28, wherein the first domain further comprises a assembly element from the second polypeptide and the second domain further comprises a 5 assembly element from the fourth polypeptide such that the assembly elements from the second and fourth polypeptides bind assemble with other promoting heterodimerization of the first and second domains. 30. The method of claim 28 or 29, wherein step (b) or step (c) comprises comparing three-dimensional structures of two or more of the first, second, third or fourth 10 polypeptides. 31. The method of any of the claims 28-30, wherein the first and third polypeptides are identical. 32. The method of claim 31, wherein the second and fourth polypeptides are identical. 33. The protein according to any one of claims 1-15, 18-21 substantially as described in the specification and in the foregoing claims. 34. The protein according to any one of claims 1-15, 18-21 substantially as illustrated in any of the drawings. 35. The method according to any one of claims 16-17, 28-32 substantially as described in the specification and in the foregoing claims. 36. The method according to any one of claims 16-17, 28-32 substantially as illustrated in any of the drawings. 37. The molecule according to any one of claims 22-24 substantially as described in the specification and in the foregoing claims. 38. The molecule according to any one of claims 22-24 substantially as illustrated in any of the drawings. 39. The nucleic acid according to any one of claims 25, 27 substantially as described in the specification and in the foregoing claims. 40. The nucleic acid according to any one of claims 25, 27 substantially as illustrated in any of the drawings. 41. The cell according to claim 26 substantially as described in the specification and in the foregoing claims. 42. The cell according to claim 26 substantially as illustrated in any of the drawings. λ