IP Library Granted Patent US 8,852,926
Granted Patent B2
US 8,852,926 · App. 12/258,016 · Granted Oct 7, 2014

Genetic selection system for identification of MicroRNA target genes

Inventors: Yin-Yuan Mo (Springfield, IL); Fangting Wu (Springfield, IL)
Assignee: Board of Trustees of Southern Illinois University
C12N15/111C12N2320/11C12N2320/12C12N2310/141
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Quick Facts
Patent No.
US 8,852,926
App. No.
12/258,016
Granted
Oct 7, 2014
Kind
B2
Abstract

There is provided an expression cassette comprising a 3′-UTR cDNA library fragment, mammalian cells transfected with the expression cassette, and kits comprising the same. Furthermore, methods for identifying target genes for microRNAs are provided that utilize the expression cassette hereof.

Claims (35)

1. A nucleic acid expression cassette expressible in mammalian cells, wherein the expression cassette comprises the following elements in a 5′ to 3′ direction: a) a promoter; b) a repressor operably linked to the promoter; c) a 3′-UTR cDNA library fragment including mRNA of the 3′-UTR cDNA library sequence operably linked to the repressor; d) an operator gene corresponding to the repressor, which is operably linked to a constitutive promoter, and e) an antibiotic-resistant element operably linked to the constitutive promoter, wherein the mRNA encoding the repressor comprises a fusion mRNA that also includes the mRNA of the 3′-UTR cDNA library fragment.

2. The expression cassette of claim 1 , wherein the repressor is selected from the group consisting of tetracycline repressor (tetR), LacI, and combinations thereof.

3. The expression cassette of claim 2 , wherein the repressor is tetR.

4. The expression cassette of claim 1 , wherein the 3′-UTR cDNA library is selected from the group consisting of breast tumor cDNA libraries, normal cDNA libraries, other tumor cDNA libraries, and combinations thereof.

5. The expression cassette of claim 1 , wherein the antibiotic-resistant element is selected from the group consisting of puromycin, hygromycin, neomycin, zeocin, ampicillin, kanamycin, tetracycline, chloramphenicol, and combinations thereof.

6. The expression cassette of claim 1 , wherein the constitutive promoter is selected from the group consisting of retroviral Rous sarcoma virus (RSV) long terminal repeat (LTR) promoter, cytomegalovirus immediate early gene (CMV) promoter, elongation factor 1 alpha promoter (EF1a), simian virus early (SV40) promoter, cytoplasmic beta-actin promoter, adenovirus major late promoter, and phosphoglycerol kinase (PGK) promoter.

7. The expression cassette of claim 6 , wherein the constitutive promoter is CMV promoter.

8. The expression cassette of claim 1 , wherein the expression cassette is contained in a plasmid, shuttle vector, or viral vector.

9. A nucleic acid expression cassette expressible in mammalian cells, wherein the expression cassette comprises the following elements in a 5′ to 3′ direction: a) a promoter; b) a fusion gene of tetracycline repressor and Krab gene operably linked to the promoter; c) a 3′-UTR cDNA library fragment including mRNA of the 3′-UTR cDNA library sequence operably linked to the fusion gene; d) a tetracycline operator gene operably linked to a constitutive promoter, and e) an antibiotic-resistant element operably linked to the constitutive promoter, wherein the mRNA encoding the repressor comprises a fusion mRNA that also includes the mRNA of the 3′-UTR cDNA library fragment.

10. The expression cassette of claim 9 , wherein the 3′-UTR cDNA library is selected from the group consisting of breast tumor cDNA libraries, normal cDNA libraries, other tumor cDNA libraries, and combinations thereof.

11. The expression cassette of claim 9 , wherein the antibiotic-resistant element is selected from the group consisting of puromycin, hygromycin, neomycin, zeocin, ampicillin, kanamycin, tetracycline, chloramphenicol, and combinations thereof.

12. The expression cassette of claim 9 , wherein the constitutive promoter is selected from the group consisting of retroviral Rous sarcoma virus (RSV) long terminal repeat (LTR) promoter, cytomegalovirus immediate early gene (CMV) promoter, simian virus early (SV40) promoter, cytoplasmic beta-actin promoter, adenovirus major late promoter, and phosphoglycerol kinase (PGK) promoter.

13. The expression cassette of claim 12 , wherein the constitutive promoter is CMV promoter.

14. A mammalian cell that is transformed with the expression cassette of claim 1 .

15. The mammalian cell of claim 14 , wherein the mammalian cell is selected from the group consisting of HEK293, HT1080, NTERA-2D, HeLa, Caco2, HepG2, BALBC/3T3, MCF-7 and MDA-MB-231, and Cos-7.

16. A method for identifying a protein as a target for a microRNA, the method comprising: a) introducing into host cells a plasmid comprising a promoter, an antibiotic-resistant element under transcriptional regulation of an operator gene and a 3′-UTR cDNA library fragment including mRNA of the 3′-UTR cDNA library sequence under transcriptional regulation of a repressor corresponding to the operator gene; b) introducing into the host cells the microRNA; c) growing the host cells in the presence of the antibiotic, wherein the cells which contain the microRNA and the 3′-UTR cDNA library fragment that bind to each other can express the antibiotic-resistant element; d) identifying the protein based on the 3-UTR cDNA fragment from the host cells that can grow in the presence of the antibiotic, wherein the mRNA encoding the repressor comprises a fusion mRNA that also includes the mRNA of the 3′-UTR cDNA library fragment.

17. The method of claim 16 , wherein the repressor is selected from the group consisting of tetracycline repressor (tetR) gene, LacI, and combinations thereof.

18. The method of claim 17 , wherein the repressor is tetracycline repressor (tetR) gene.

19. The method of claim 16 , wherein the microRNA is selected from the group consisting of miR-21, miR-15, miR-16, let-7, miR-17-5 p , miR-20 a , miR-372, miR-373, miR-335, miR-10 b , miR-30, and miR-224.

20. The method of claim 19 , wherein the microRNA is selected from the group consisting of miR-21, miR-15, miR-16, let-7, miR-17-5 p , miR-20 a , miR-372, miR-373, miR-335, miR-10 b , miR-30, and miR-224.

21. The method of claim 16 , wherein the host cells are selected from HEK293, HT1080, NTERA-2D, HeLa, Caco2, HepG2, BALBC/3T3, MCF-7 and MDA-MB-231, and Cos-7.

22. The method of claim 16 , wherein the 3′-UTR cDNA library is selected from the group consisting of breast tumor cDNA libraries, normal cDNA libraries, other tumor cDNA libraries, and combinations thereof.

23. The method of claim 16 , wherein the antibiotic-resistant element is an element that codes for genes selected from the group consisting of puromycin, hygromycin, neomycin, zeocin, ampicillin, kanamycin, tetracycline, and chloramphenicol.

24. The method of claim 16 , wherein the step of identifying the protein is selected from the group consisting of PCR, Western blotting, immunohistochemistry and immunofluorescence microscopy.

25. A method for identifying a protein as a target for a microRNA, the method comprising: a) introducing into host cells a plasmid comprising a promoter, an antibiotic-resistant element under transcriptional regulation of tetracycline operator (tetO) gene and a 3′-UTR cDNA library fragment including mRNA of the 3′-UTR cDNA library sequence under transcriptional regulation of tetracycline repressor (tetR) gene; b) introducing into the host cells the microRNA; c) growing the host cells in the presence of the antibiotic, wherein the cells which contain the microRNA and the 3′-UTR cDNA library fragment that bind to each other can express the antibiotic-resistant element; d) identifying the protein based on the 3-UTR cDNA fragment from the host cells that can grow in the presence of the antibiotic, wherein the mRNA encoding the repressor comprises a fusion mRNA that also includes the mRNA of the 3′-UTR cDNA library fragment.

26. The method of claim 25 , wherein the microRNA is selected from the group consisting of miR-21, miR-15, miR-16, let-7, miR-17-5 p , miR-20 a , miR-372, miR-373, miR-335, miR-10 b , miR-30, and miR-224.

27. The method of claim 26 , wherein the microRNA is selected from the group consisting of miR-21, miR-15, miR-16, let-7, miR-17-5 p , miR-20 a , miR-372, miR-373, miR-335, miR-10 b , miR-30, and miR-224.

28. The method of claim 25 , wherein the host cells are selected from HEK293, HT1080, NTERA-2D, HeLa, Caco2, HepG2, BALBC/3T3, MCF-7 and MDA-MB-231, and Cos-7.

29. The method of claim 25 , wherein the 3′-UTR cDNA library is selected from the group consisting of breast tumor cDNA libraries, normal cDNA libraries, other tumor cDNA libraries, and combinations thereof.

30. The method of claim 25 , wherein the antibiotic-resistant element is an element that codes for a gene selected from the group consisting of puromycin, hygromycin, neomycin, zeocin, ampicillin, kanamycin, tetracycline, and chloramphenicol.

31. The method of claim 25 , wherein the step of identifying the protein is selected from the group consisting of PCR, Western blotting, immunohistochemistry, and immunofluorescence microscopy.

32. A kit comprising the expression cassette of claim 1 .

33. The kit of claim 32 , wherein the repressor is tetR.

34. The kit of claim 32 , wherein the 3′-UTR cDNA library is selected from the group consisting of breast tumor cDNA libraries, normal cDNA libraries, other tumor cDNA libraries, and combinations thereof.

35. The kit of claim 32 , wherein the antibiotic-resistant element is selected from the group consisting of puromycin, hygromycin, neomycin, zeocin, ampicillin, kanamycin, tetracycline, and chloramphenicol.

Assignments (2)
CONFIRMATORY LICENSE Recorded Nov 25, 2009
From: SOUTHERN ILLINOIS UNIVERSITY SCHOOL OF MEDICINE
To: US GOVERNMENT - SECRETARY FOR THE ARMY
Reel/Frame 023568/0214 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2008
From: MO, YIN-YUAN; WU, FANGTING
To: BOARD OF TRUSTEES OF SOUTHERN ILLINOIS UNIVERSITY
Reel/Frame 021828/0676 →
Continuity (2)
Provisional Application 61000336 · Oct 25, 2007
Related Publication 20090137421A1 · May 28, 2009