IP Library Granted Patent US 8,865,154
Granted Patent B2
US 8,865,154 · App. 14/141,983 · Granted Oct 21, 2014

Recombinant factor VIII having enhanced stability following mutation at the A1-C2 domain interface

Inventors: Philip J. Fay (Pittsford, NY); Hironao Wakabayashi (Rochester, NY)
Assignee: University of Rochester
C07K14/755A61K38/00
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Quick Facts
Patent No.
US 8,865,154
App. No.
14/141,983
Granted
Oct 21, 2014
Kind
B2
Abstract

The invention relates to a recombinant factor VIII that includes one or more mutations at an interface of A1 and C2 domains of recombinant factor VIII. The one or more mutations include substitution of one or more amino acid residues with either a cysteine or an amino acid residue having a higher hydrophobicity. This results in enhanced stability of factor VIII. Methods for making the recombinant factor VIII, pharmaceutical compositions containing the recombinant factor VIII, and use of the recombinant factor VIII for treating hemophilia A are also disclosed.

Claims (37)

1. An isolated nucleic acid molecule encoding a recombinant factor VIII, wherein the recombinant factor VIII comprises a substitution of one or more amino acid residues with an amino acid residue having a higher hydrophobicity at a C2 domain interface of an A1 domain, wherein the C2 domain interface comprising the substitution has the amino acid sequence of KXS (SEQ ID NO: 19) where X is Valine, Isoleucine, or Leucine.

2. The isolated nucleic acid molecule according to claim 1 , wherein the recombinant factor VIII further comprises one or more of (i) factor IXa and/or factor X binding domains modified to enhance the affinity of the recombinant factor VIII for one or both of factor IXa and factor X; (ii) modified sites that enhance secretion in culture; (iii) modified serum protein binding sites that enhance the circulating half-life thereof; (iv) at least one glycosylation recognition sequence that is effective in decreasing antigenicity and/or immunogenicity thereof; (v) a modified A1 domain calcium-binding site that improves specific activity of the recombinant factor VIIIa; (vi) a modified activated protein C-cleavage site; (vii) a modified A1 and A2 domain interface; and (viii) a modified A2 and A3 domain interface.

3. The isolated nucleic acid molecule according to claim 1 , wherein the recombinant factor VIII further comprises a modified A1 domain calcium-binding site that improves specific activity of the recombinant factor VIIIa.

4. The isolated nucleic acid molecule according to claim 3 , wherein the modified A1 domain calcium-binding site comprises a Glu→Ala substitution corresponding to position 113 of SEQ ID NO: 2.

5. The isolated nucleic acid molecule according to claim 1 , wherein the recombinant factor VIII further comprises one or more mutations at the A1 and A2 domain interface and/or one or more mutations at the A2 and A3 domain interface.

6. The isolated nucleic acid molecule according to claim 5 , wherein the one or more mutations comprise substitution of one or more charged amino acid residues with a hydrophobic amino acid residue at the A1 and A2 domain interface and/or A2 and A3 domain interface.

7. The isolated nucleic acid molecule according to claim 6 , wherein the charged amino acid residue at the A1 and A2 domain interface and/or A2 and A3 domain interface is either Glu or Asp, and the hydrophobic amino acid substitution at the A1 and A2 domain interface and/or A2 and A3 domain interface is one of Ala, Val, Ile, Leu, Met, Phe, or Trp.

8. The isolated nucleic acid molecule according to claim 6 , wherein the one or more mutations comprise a substitution of a Glu287 residue of wild type factor VIII, a substitution of an Asp302 residue of wild type factor VIII, a substitution of an Asp519 residue of wild type factor VIII, a substitution of a Glu665 residue of wild type factor VIII, a substitution of a Glu1984 residue of wild type factor VIII, or combinations thereof.

9. The isolated nucleic acid molecule according to claim 8 , wherein the one or more mutations comprise:

(i) an Asp→Ala substitution at a position corresponding to residue 302 of SEQ ID NO: 2;

(ii) a Glu→Ala substitution at a position corresponding to residue 287 of SEQ ID NO: 2;

(iii) a Glu→Ala or Glu→Val substitution at a position corresponding to residue 665 of SEQ ID NO: 2;

(iv) a Asp→Ala or Asp→Val substitution at a position corresponding to residue 519 of SEQ ID NO: 2;

(v) a Glu→Ala or Glu→Val substitution at a position corresponding to residue 1984 of SEQ ID NO: 2; or

(vi) combinations of any two or more of the substitutions (i)-(v).

10. The isolated nucleic acid molecule according to claim 1 , wherein the nucleic acid is RNA.

11. The isolated nucleic acid molecule according to claim 1 , wherein the nucleic acid is DNA.

12. A recombinant expression system comprising a DNA molecule of claim 11 .

13. The recombinant expression system according to claim 12 , wherein the recombinant expression system is a viral vector.

14. The recombinant expression system according to claim 13 , wherein the viral vector is an adeno-associated viral vector.

15. A recombinant host cell comprising the isolated nucleic acid molecule according to claim 1 .

16. The recombinant host cell according to claim 15 , wherein the recombinant host cell is a dermal fibroblast.

17. An implantable device comprising a plurality of the recombinant host cells according to claim 15 contained within the device.

18. A recombinant host cell comprising a DNA molecule of claim 11 .

19. An implantable device comprising a plurality of the recombinant host cells according to claim 18 contained within the device.

20. A method of treating an animal for hemophilia A, said method comprising:

administering to an animal exhibiting hemophilia A an effective amount of the nucleic acid molecule of claim 1 , whereby the animal expresses the recombinant factor VIII and exhibits effective blood clotting following vascular injury.

21. The method according to claim 20 , wherein said animal is a mammal.

22. The method according to claim 21 , wherein said mammal is selected from the group consisting of human, rat, mouse, guinea pig, dog, cat, monkey, chimpanzee, orangutan, cow, horse, sheep, pig, goat, rabbit, and chicken.

23. The method according to claim 20 , wherein said nucleic acid molecule comprises a viral vector.

24. The method according to claim 23 , wherein said viral vector is an adeno-associated viral vector.

25. A method of treating an animal for hemophilia A, said method comprising:

administering to an animal exhibiting hemophilia A a recombinant host cell of claim 15 , whereby the animal expresses the recombinant factor VIII and exhibits effective blood clotting following vascular injury.

26. The method according to claim 25 , wherein said administering comprises implanting into the animal a device containing a plurality of said recombinant host cells.

27. The method according to claim 25 , wherein the recombinant host cell is a dermal fibroblast.

28. The method according to claim 25 , wherein said animal is a mammal.

29. The method according to claim 28 , wherein said mammal is selected from the group consisting of human, rat, mouse, guinea pig, dog, cat, monkey, chimpanzee, orangutan, cow, horse, sheep, pig, goat, rabbit, and chicken.

Assignments (1)
CONFIRMATORY LICENSE Recorded Apr 23, 2019
From: UNIVERSITY OF ROCHESTER
To: NATIONAL INSTITUTES OF HEALTH - DIRECTOR DEITR
Reel/Frame 048965/0421 →
Continuity (3)
Division 13231948 · Sep 13, 2011
Provisional Application 61382919 · Sep 14, 2010
Related Publication 20140120071A1 · May 1, 2014