IP Library Patent Application 14394854
Patent Application
App. No. 14/394,854

USE OF ENGINEERED VIRUSES TO SPECIFICALLY KILL SENESCENT CELLS

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Patent No.
US None
App. No.
14/394,854
Abstract

Polypeptides, viruses, methods and compositions provided herein are useful for the selective elimination of senescent cells. Method aspects include methods for inducing apoptosis in a senescent cell comprising administering to the cell a polynucleotide, virus, host cell, or pharmaceutical composition described herein. Other methods include expressing a pro-apoptotic gene in a senescent cell comprising administering to the cell the polynucleotide, virus, or pharmaceutical composition as described herein.

Claims (38)

1 . A polynucleotide comprising a pro-apoptotic gene and a p16 promoter, wherein the expression of the pro-apoptotic gene is regulated by the p16 promoter or an equivalent thereof.

2 . The polynucleotide of claim 1 , wherein the pro-apoptotic gene is of the group: a caspase, Bik, Puma, Bim, Bax, Bak, Bid, Bad, Bmf, Noxa, and Hrk.

3 . The polynucleotide of claim 2 , wherein the pro-apoptotic gene is a caspase.

4 . The polynucleotide of claim 3 wherein the caspase is caspase 8.

5 . The polynucleotide of any one of claims 1 - 4 , wherein the p16 promoter comprises the human p16 promoter, an equivalent thereof, or a polynucleotide having at least 80% identity to the human p16 promoter.

6 . The polynucleotide of claim 5 , wherein the p16 promoter comprises a polynucleotide having at least 90% identity to the human p16 promoter.

7 . The polynucleotide of claim 6 , wherein the p16 promoter comprises a polynucleotide having at least 95% identity to the human p16 promoter.

8 . The polynucleotide of any one of claims 5 - 7 , wherein the human p16 promoter comprises a sequence corresponding to SEQ ID NO: 1.

9 . The polynucleotide of any one of claims 1 - 4 , wherein the p16 promoter comprises the mouse p16 promoter, an equivalent thereof, or a polynucleotide having at least 80% identity to the human p16 promoter.

10 . The polynucleotide of claim 9 , wherein the p16 promoter comprises a polynucleotide having at least 90% identity to the mouse p16 promoter.

11 . The polynucleotide of claim 10 , wherein the p16 promoter comprises a polynucleotide having at least 95% identity to the mouse p16 promoter.

12 . The polynucleotide of any one of claims 9 - 11 , wherein the mouse p16 promoter comprises a sequence corresponding to SEQ ID NO: 2.

13 . A viral vector comprising the polynucleotide of any one of claims 1 - 12 .

14 . The viral vector of claim 13 , wherein the viral vector is derived from a retrovirus.

15 . The viral vector of claim 14 wherein the viral vector is derived from a lentivirus.

16 . A pseudotyped viral particle comprising the viral vector of any one of claims 13 - 15 .

17 . The pseudotyped viral particle of claim 16 , wherein the viral particle is lytic.

18 . The pseudotyped viral particle of claim 16 or 17 , wherein the viral particle is capable of infecting non-dividing cells.

19 . A pharmaceutical composition comprising the polynucleotide of any one of claims 1 - 12 , the viral vector of any one of claims 13 - 15 , or the pseudotyped viral particle of any one of claims 16 - 18 and a carrier.

20 . A host cell comprising the polynucleotide of any one of claims 1 - 12 , the viral vector of any one of claims 13 - 15 , or the viral particle of any one of claims 16 - 18 .

21 . A conditionally replicating viral construct comprising an essential viral gene regulated by one or more promoters wherein at least one promoter is the p16 promoter or an equivalent thereof.

22 . The conditionally replicating viral particle of claim 21 wherein the one or more promoters comprises a chemically inducible promoter.

23 . The conditionally replicating viral particle of claim 21 or 22 , wherein the p16 promoter comprises the human p16 promoter, an equivalent thereof, or a polynucleotide having at least 80% identity to the human p16 promoter.

24 . The conditionally replicating viral particle of claim 23 , wherein the p16 promoter comprises a polynucleotide having at least 90% identity to the human p16 promoter.

25 . The conditionally replicating viral particle of claim 24 , wherein the p16 promoter comprises a polynucleotide having at least 95% identity to the human p16 promoter.

26 . The conditionally replicating viral particle of any one of claims 23 - 25 , wherein the human p16 promoter comprises a sequence corresponding to SEQ ID NO: 1.

27 . The conditionally replicating viral particle of claim 21 or 22 , wherein the p16 promoter comprises the mouse p16 promoter, an equivalent thereof, or a polynucleotide having at least 80% identity to the mouse p16 promoter.

28 . The conditionally replicating viral particle of claim 27 , wherein the p16 promoter comprises a polynucleotide having at least 90% identity to the mouse p16 promoter.

29 . The conditionally replicating viral particle of claim 28 , wherein the p16 promoter comprises a polynucleotide having at least 95% identity to the mouse p16 promoter.

30 . The conditionally replicating viral particle of any one of claims 27 - 29 , wherein the mouse p16 promoter comprises a sequence corresponding to SEQ ID NO: 2.

31 . The conditionally replicating viral particle of any one of claims 21 - 30 , wherein the viral particle further comprises the polynucleotide of any one of claims 1 - 12 .

32 . A method for expressing a pro-apoptotic gene in a senescent cell comprising administering to the cell the polynucleotide of any one of claims 1 - 12 , the viral vector of any one of claims 13 - 17 , the viral particle of any one of claim 16 - 18 or 21 - 31 , or the pharmaceutical composition of claim 19 .

33 . A method for inducing apoptosis in a senescent cell comprising administering to the cell the polynucleotide of any one of claims 1 - 12 , the viral vector of any one of claims 13 - 17 , the viral particle of any one of claim 16 - 18 or 21 - 31 , or the pharmaceutical composition of claim 19 .

34 . The method of claim 32 or 33 wherein the p16 promoter is activated in the senescent cell.

35 . The method of any one of claims 32 - 34 wherein the cell is in vivo in a mammal.

36 . The method of any one of claims 32 - 34 wherein the cell is in vitro.

37 . A method for expressing a conditionally replicating virus in a cell comprising infecting the cell with the viral particle of any one of claim 16 - 18 or 21 - 31 , wherein the virus replicates in senescent cells but not in non-senescent cells.

38 . A method for inducing apoptosis in senescent cell in subjects in need thereof comprising administering to the subject the polynucleotide of any one of claims 1 - 12 , the viral vector of any one of claims 13 - 17 , the viral particle of any one of claim 16 - 18 or 21 - 31 , or the pharmaceutical composition of claim 19 .

Assignments (3)
CHANGE OF NAME Recorded Apr 15, 2015
From: CENEXYS, INC.
To: UNITY BIOTECHNOLOGY, INC.
Reel/Frame 035438/0339 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2015
From: LICHTSTEINER, SERGE
To: KYTHERA BIOPHARMACEUTICALS, INC.
Reel/Frame 035029/0542 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2015
From: DAVID, NATHANIEL
To: CENEXYS, INC.
Reel/Frame 035029/0586 →