Nova Patents
IL213348A

Covalent diabodies and uses thereof

Abstract

This record has no abstract on file.

Term

No projected expiry on record.

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26 claims: 12 independent, 14 dependent

  1. 1
    213348/5 WHAT IS CLAIMED IS:1. A covalently associated, bi-specific diabody molecule having a heterodimer-promoting domain, said diabody molecule comprising a first polypeptide chain and a second polypeptide chain wherein said first polypeptide chain and said second polypeptide chain are covalently bonded to one another, wherein: I.said first polypeptide chain comprises, in the N-terminal to C-terminal direction: (i) a first domain comprising a binding region of a light chain variable domain of a first immunoglobulin (VL1) specific for an epitope (1), and (ii) a second domain comprising a binding region of a heavy chain variable domain of a second immunoglobulin (VH2) specific for an epitope (2), and (iii) a positively or negatively charged polypeptide domain that spontaneously assumes a helical conformation;which first domain and second domain are covalently linked such that the first domain and second domain do not associate to form said epitope (1) binding site or said epitope (2) binding site;II. said second polypeptide chain comprises, in the N-terminal to C-terminal direction: (i) a fourth domain comprising a binding region of a light chain variable domain of the second immunoglobulin (VL2) specific for said epitope (2),, and (ii) a fifth domain comprising a binding region of a heavy chain variable domain of the first immunoglobulin (VH1) specific for said epitope (1), which fourth domain and fifth domain are covalently linked such that the fourth domain and fifth domain do not associate to form said epitope (1) binding site or said epitope (2) binding site;wherein the first domain and the fifth domain associate to form a first binding site (VL1)(VH1) that binds said epitope (1);wherein the second domain and the fourth domain associate to form a second binding site (VL2)(VH2) that binds the said epitope (2);and 237 213348/5 wherein the first polypeptide chain and the second polypeptide chain are covalently linked via a disulfide bond between at least one cysteine residue outside of the first domain and the second domain on the first polypeptide chain and at least one cysteine residue outside of the fourth domain and the fifth domain on the second polypeptide chain, which cysteine residue on the first polypeptide chain is not at the C-terminus of the first polypeptide chain and which cysteine residue on the second polypeptide chain is not at the C-terminus of the second polypeptide chain.
  2. 4
    The covalently associated, bi-specific diabody molecule of any one of claims 1-3, wherein said second polypeptide chain additionally comprises a sixth domain, wherein said sixth domain is an Fc domain or a portion of an Fc domain, and wherein said sixth domain is linked to said charged polypeptide domain, or said sixth domain is linked to the N-terminus of said fourth domain. 238 213348/5
  3. 5
    The covalently associated, bi-specific diabody molecule of any one of claims 1-3, wherein said diabody molecule additionally comprises a third polypeptide chain and a fourth polypeptide chain, said third and fourth polypeptide chains being covalently bonded to one another, wherein:III. said third polypeptide chain comprises, in the N-terminal to C- terminal direction: (i) a seventh domain comprising a binding region of a light chain variable domain of a third immunoglobulin (VL3) specific for an epitope (3), (ii) an eighth domain comprising a binding region of a heavy chain variable domain of a fourth immunoglobulin (VH4) specific for an epitope (4), (iii) a positively or negatively charged polypeptide domain that spontaneously assumes a helical conformation, and (iv) a ninth domain, wherein said ninth domain is an Fc domain or a portion of an Fc domain;which seventh domain and eighth domain are covalently linked such that the seventh domain and eighth domain do not associate together to form said epitope (3) binding site or said epitope (4) binding site;IV. said fourth polypeptide chain comprises, in the N-terminal to C-terminal direction: (i) a tenth domain comprising a binding region of a light chain variable domain of the fourth immunoglobulin (VL4) specific for said epitope (4), (ii) an eleventh domain comprising a binding region of a heavy chain variable domain of the third immunoglobulin (VH3) specific for said epitope (3);which tenth domain and eleventh domain are covalently linked such that the tenth domain and eleventh domain do not associate together to form said epitope (3) binding site or said epitope (4) binding site;wherein the seventh domain and the eleventh domain associate together to form a binding site (VL3)(VH3) that binds said epitope (3);wherein the eighth domain and the tenth domain associate together to form a binding site (VL4)(VH4) that binds said epitope (4). 239 213348/5
  4. 7
    The covalently associated, bi-specific diabody molecule of any one of claims 1-6, wherein said negatively charged polypeptide separator that spontaneously assumes a helical conformation is an E-coil separator having the amino acid sequence of SEQ ID NO:299.
  5. 8
    The covalently associated, bi-specific diabody molecule of any one of claims 1-7, wherein said positively charged polypeptide separator that spontaneously assumes a helical conformation is a K-coil separator having the amino acid sequence of SEQ ID NO:300.
  6. 9
    A covalently associated, bi-specific diabody molecule that is a dimer of the covalently associated, bi-specific diabody of any one of claims 1-8.
  7. 10
    The covalently associated, bi-specific diabody molecule of any one of claims 1-9, wherein said first polypeptide chain additionally comprises a polypeptide portion of a protein that binds to a serum protein, said polypeptide portion being capable of binding to said serum protein.
  8. 15
    The covalently associated, bi-specific diabody molecule of any one of claims 10-14, wherein said diabody molecule exhibits an in vivo serum half-life of greater than 2 hours.
  9. 18
    The covalently associated, bi-specific diabody molecule of any one of claims 1-17, having a domain that binds an epitope of CD16.
  10. 19
    The covalently associated, bi-specific diabody molecule of any one of claims 1-17, having a domain that is a binding ligand for the Natural Killer Group 2D (NKG2D) receptor.
  11. 20
    The covalently associated, bi-specific diabody molecule of any one of claims 1-17, having a domain that is a binding ligand for the T-cell receptor (TCR) binding domain.
  12. 24
    28. The covalently associated, bi-specific diabody molecule of any one of claims 1-20, wherein said diabody molecule binds to a tumor-associated antigen.
Independent claims12