IP Library Granted Patent US 9,334,324
Granted Patent B2
US 9,334,324 · App. 13/577,104 · Granted May 10, 2016

Podocalyxin-like-protein-1 binding antibody molecule

Inventors: Boon Hwa Andre Choo (Singapore, SG); Vai Tak Victor Wong (Singapore, SG)
Assignee: Agency for Science, Technology and Research
C07K16/28C07K2317/53C07K2317/54C07K2317/55C07K2317/622C07K2317/626C07K2317/73C07K2319/73
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Quick Facts
Patent No.
US 9,334,324
App. No.
13/577,104
Granted
May 10, 2016
Kind
B2
Abstract

The disclosure relates to novel markers of pluripotent stem cells and uses thereof, and particularly, though not exclusively, to antibody molecules based on fragments of mAb84 which bind to undifferentiated pluripotent stem cells via podocalyxin-like protein-1 (PODXL).

Claims (39)

1. An antibody molecule which binds PODXL and includes two monomers, each monomer including an Fv antibody fragment connected via a flexible linker to a dimerizing portion comprising a dimerization domain, wherein the dimerizing portions interact to form the antibody molecule, and wherein the antibody molecule is a multimer,

wherein each Fv antibody fragment has a VH region and a VL region,

and comprises CDR amino acid sequences (i) to (vi):

(i) VL CDR1:

(SEQ ID NO: 2)

SASSSVNYMY;

(ii) VL CDR2:

(SEQ ID NO: 3)

DTSNLAS;

(iii) VL CDR3:

(SEQ ID NO: 4)

QQWSSYPYT;

(iv) VH CDR1:

(SEQ ID NO: 5)

NYWMN;

(v) VH CDR2:

(SEQ ID NO: 6)

EIRLKSNNYATHYAESVKG;

(vi) VH CDR3:

(SEQ ID NO: 7)

ERA;

wherein the dimerization domain is selected from a helix-turn-helix (HTH) motif, a coiled-coil motif, or an EF hand motif; and wherein the antibody molecule is a cytotoxic antibody molecule.

2. The antibody molecule of claim 1 wherein the Fv antibody fragment is an scFv antibody fragment.

3. The antibody molecule of claim 1 which is a dimer.

4. The antibody molecule of claim 1 wherein the flexible linker is a linker peptide which has 4 or more amino acids, 5 or more amino acids, 6 or more amino acids, 7 or more amino acids, 8 or more amino acids, 9 or more amino acids, 10 or more amino acids, 11 or more amino acids, 12 or more amino acids, 13 or more amino acids, 14 or more amino acids, or 15 or more amino acids.

5. The antibody molecule of claim 1 wherein the flexible linker is a linker peptide which has 30 or fewer amino acids, 25 or fewer amino acids, 20 or fewer amino acids, or 15 or fewer amino acids.

6. The antibody molecule of claim 1 wherein the flexible linker is a linker peptide which comprises the amino acid sequence of an immunoglobulin hinge region.

7. The antibody molecule of claim 6 wherein the linker peptide comprises an IgG hinge region.

8. The antibody molecule of claim 7 wherein the linker peptide has a sequence substantially as set out in SEQ ID NO: 10.

9. The antibody molecule of claim 1 wherein the dimerization domain comprises a helix-turn-helix motif.

10. The antibody molecule of claim 1 wherein the dimerizing portions interact through non-covalent interactions.

11. The antibody molecule of claim 1 wherein the dimerizing portions interact through covalent interactions.

12. The antibody molecule of claim 1 which is less than 150 kDa.

13. The antibody molecule of claim 12 which is about 65 kDa or less.

14. The antibody molecule of claim 1 which is 150 kDa or less, 140 kDa or less, 130 kDa or less, 120 kDa or less, 110 kDa or less, 100 kDa or less, 90 kDa or less, 80 kDa or less, 70 kDa or less, 60 kDa or less, or 50 kDa or less.

15. The antibody molecule of claim 1 which is capable of destroying an undifferentiated pluripotent stem cell.

16. The antibody molecule of claim 1 which is cytotoxic to an undifferentiated pluripotent stem cell.

17. The antibody molecule of claim 1 wherein the dimerization domain is a leucine zipper motif.

18. The antibody molecule of claim 1 which is a tetramer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2012
From: CHOO, BOON HWA ANDRE; WONG, VAI TAK VICTOR
To: AGENCY FOR SCIENCE, TECHNOLOGY AND RESEARCH
Reel/Frame 028745/0636 →
Continuity (2)
Provisional Application 61301262 · Feb 4, 2010
Related Publication 20120301899A1 · Nov 29, 2012