IP Library Patent Application 12842666
Patent Application
App. No. 12/842,666

GENOMIC EDITING OF GENES INVOLVED IN AMYOTROPHYIC LATERAL SCLEROSIS DISEASE

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Patent No.
US None
App. No.
12/842,666
Abstract

The present invention provides genetically modified animals and cells comprising edited chromosomal sequences encoding proteins that are associated ALS. In particular, the animals or cells are generated using a zinc finger nuclease-mediated editing process. Also provided are methods of using the genetically modified animals or cells disclosed herein to screen agents for toxicity and other effects.

Claims (49)

1 . A genetically modified animal comprising at least one edited chromosomal sequence encoding a protein associated with ALS.

2 . The genetically modified animal of claim 1 , wherein the edited chromosomal sequence is inactivated, modified, or comprises an integrated sequence.

3 . The genetically modified animal of claim 1 , wherein the edited chromosomal sequence is inactivated such that no functional ALS-related protein associated is produced.

4 . The genetically modified animal of claim 3 , wherein inactivated chromosomal sequence comprises no exogenously introduced sequence.

5 . The genetically modified animal of claim 3 , further comprising at least one chromosomally integrated sequence encoding a functional protein associated with ALS.

6 . The genetically modified animal of claim 1 , wherein the protein associated with ALS is chosen from SOD1, ALS2, FUS, TARDBP, VEGFA, VEGFB, VEGFC, and combinations thereof.

7 . The genetically modified animal of claim 1 , further comprising a conditional knock-out system for conditional expression of the ALS-related protein.

8 . The genetically modified animal of claim 1 , wherein the edited chromosomal sequence comprises an integrated reporter sequence.

9 . The genetically modified animal of claim 1 , wherein the animal is heterozygous or homozygous for the at least one edited chromosomal sequence.

10 . The genetically modified animal of claim 1 , wherein the animal is an embryo, a juvenile, or an adult.

11 . The genetically modified animal of claim 1 , wherein the animal is chosen from bovine, canine, equine, feline, ovine, porcine, non-human primate, and rodent.

12 . The genetically modified animal of claim 1 , wherein the animal is rat.

13 . The genetically modified animal of claim 1 , wherein the animal is rat and the protein is a human protein associated with ALS.

14 . A non-human embryo, the embryo comprising at least one RNA molecule encoding a zinc finger nuclease that recognizes a chromosomal sequence encoding a protein associated with ALS, and, optionally, at least one donor polynucleotide comprising a sequence encoding a protein associated with ALS.

15 . The non-human embryo of claim 14 , wherein the protein associated with ALS is chosen from SOD1, ALS2, FUS, TARDBP, VEGFA, VEGFB, VEGFC, and combinations thereof.

16 . The non-human embryo of claim 14 , wherein the embryo is chosen from bovine, canine, equine, feline, ovine, porcine, non-human primate, and rodent.

17 . The non-human embryo of claim 14 , wherein the embryo is rat and the protein is the human protein associated with ALS.

18 . A genetically modified cell, the cell comprising at least one edited chromosomal sequence encoding a protein associated with ALS.

19 . The genetically modified cell of claim 18 , wherein the edited chromosomal sequence is inactivated, modified, or comprises an integrated sequence.

20 . The genetically modified cell of claim 18 , wherein the edited chromosomal sequence is inactivated such that no functional protein associated with ALS is produced.

21 . The genetically modified cell of claim 20 , further comprising at least one chromosomally integrated sequence encoding a functional protein associated with ALS.

22 . The genetically modified cell of claim 18 , wherein the protein associated with ALS is chosen from SOD1, ALS2, FUS, TARDBP, VEGFA, VEGFB, VEGFC, and combinations thereof.

23 . The genetically modified cell of claim 18 , wherein the cell is heterozygous or homozygous for the at least one edited chromosomal sequence.

24 . The genetically modified cell of claim 18 , wherein the cell is of bovine, canine, equine, feline, human, ovine, porcine, non-human primate, or rodent origin.

25 . The genetically modified cell of claim 18 , wherein the cell is of rat origin and the protein is a human protein associated with ALS.

26 . The genetically modified cell of claim 20 , wherein inactivated chromosomal sequence comprises no exogenously introduced sequence.

27 . The genetically modified cell of claim 18 , further comprising a conditional knock-out system for conditional expression of the ALS-related protein.

28 . The genetically modified cell of claim 18 , wherein the edited chromosomal sequence comprises an integrated reporter sequence.

29 . A method for assessing the effect of an agent in an animal, the method comprising contacting a genetically modified animal comprising at least one edited chromosomal sequence encoding a protein associated with ALS with the agent, and comparing results of a selected parameter to results obtained from contacting a wild-type animal with the same agent, wherein the selected parameter is chosen from:

a) rate of elimination of the agent or its metabolite(s);

b) circulatory levels of the agent or its metabolite(s);

c) bioavailability of the agent or its metabolite(s);

d) rate of metabolism of the agent or its metabolite(s);

e) rate of clearance of the agent or its metabolite(s);

f) toxicity of the agent or its metabolite(s); and

g) efficacy of the agent or its metabolite(s).

30 . The method of claim 29 , wherein the agent is a pharmaceutically active ingredient, a drug, a toxin, a biologically active agent or a chemical.

31 . The method of claim 29 , wherein the protein associated with ALS is chosen from SOD1, ALS2, FUS, TARDBP, VEGFA, VEGFB, VEGFC, and combinations thereof.

32 . The method of claim 29 , wherein the animal is a rat and the protein is human.

33 . A method for assessing the therapeutic potential of an agent in an animal, the method comprising contacting a genetically modified animal comprising at least one edited chromosomal sequence encoding a protein associated with ALS with the agent, and comparing results of a selected parameter to results obtained from a wild-type animal with no contact with the same agent, wherein the selected parameter is chosen from:

a) spontaneous behaviors;

b) performance during behavioral testing;

c) physiological anomalies;

d) abnormalities in tissues or cells;

e) biochemical function; and

f) molecular structures.

34 . The method of claim 33 , wherein the agent is a pharmaceutically active ingredient, a drug, a toxin, or a chemical.

35 . The method of claim 33 , wherein the at least one edited chromosomal sequence is inactivated such that the ALS-related protein is not produced or is not functional, and wherein the animal further comprises at least one chromosomally integrated sequence encoding a functional ortholog of the ALS-related protein

36 . The method of claim 33 , wherein the protein associated with ALS is chosen from SOD1, ALS2, FUS, TARDBP, VEGFA, VEGFB, VEGFC, and combinations thereof.

Assignments (2)
MERGER Recorded Jul 26, 2011
From: SIGMA-ALDRICH CO.
To: SIGMA-ALDRICH CO., LLC
Reel/Frame 026649/0180 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 31, 2010
From: WEINSTEIN, EDWARD; SIMMONS, PHIL; CUI, XIAOXIA
To: SIGMA-ALDRICH CO.
Reel/Frame 024919/0535 →