Claims
- 1. A pRNA chimera comprising:
(a) a pRNA region; and (b) a spacer region comprising a biologically active RNA, the spacer region covalently linked at its 5′ and 3′ ends to the pRNA region; wherein the pRNA region comprises: (i) in the 5′ to 3′ direction beginning at the covalent linkage of the pRNA with the 3′ end of the spacer region
a first loop 22; a second loop 24; and a lower stem-loop structure comprising a bulge 25, a first stem section 26 and a third loop 27; (ii) a second stem section 20 interposed between the spacer region and the stem-loop structure; (iii) a third stem section 21 interposed between the stem-loop structure and the first loop 22; (iv) a fourth stem section 23 interposed between the first loop 22 and the second loop 24; and (v) an opening defining 5′ and 3′ ends of the pRNA chimera.
- 2. The pRNA chimera of claim 1 wherein the biologically active RNA is selected from the group consisting of a ribozyme, a siRNA, an RNA aptamer, an antisense RNA and a peptide nucleic acid (PNA).
- 3. A pRNA chimera comprising:
(a) a pRNA region; and (b) a spacer region comprising a ribozyme and first and second nucleotide strings interposed between the ribozyme and the pRNA region, the spacer region covalently linked at its 5′ and 3′ ends to the pRNA region; wherein the pRNA region comprises: (i) in the 5′ to 3′ direction beginning at the covalent linkage of the pRNA with the 3′ end of the spacer region
a first loop 22; a second loop 24; and a stem-loop structure comprising a bulge 25, a first stem section 26 and a third loop 27; (ii) a second stem section 20 interposed between the spacer region and the stem-loop structure; (iii) a third stem section 21 interposed between the stem-loop structure and the first loop 22; (iv) a fourth stem section 23 interposed between the first loop 22 and the second loop 24; and (v) an opening defining 5′ and 3′ ends of the pRNA chimera.
- 4. A pRNA chimera comprising:
a pRNA region comprising a circularly permuted pRNA of a bacteriophage selected from the group consisting of bacteriophage β29, SF5′, B103, PZA, M2, NF and GA1, a spacer region comprising a biologically active RNA, the spacer region covalently linked at its 5′ and 3′ ends to the pRNA region.
- 5. The pRNA chimera of claim 4 wherein the biologically active RNA is selected from the group consisting of a ribozyme, a siRNA, an RNA aptamer, an antisense RNA and a peptide nucleic acid (PNA).
- 6. A pRNA chimera comprising:
(a) a pRNA region comprising a circularly permuted φ29 pRNA; and (b) a spacer region comprising a ribozyme and first and second nucleotide strings interposed between the ribozyme and the pRNA region, the spacer region covalently linked at its 5′ and 3′ ends to the pRNA region.
- 7. A DNA molecule comprising a nucleotide sequence that encodes a pRNA chimera comprising a pRNA region flanking a spacer region comprising a biologically active RNA.
- 8. A method for making a pRNA chimera comprising:
providing a DNA encoding a pRNA chimera comprising a pRNA region flanking a spacer region comprising a biologically active RNA; and transcribing the DNA in vitro to yield the pRNA chimera.
- 9. The method of claim 8 further comprising using polymerase chain reaction on a DNA template to generate the DNA encoding the pRNA chimera.
- 10. The method of claim 8 further comprising generating the DNA encoding the pRNA chimera by cloning the DNA into a plasmid and replicating the plasmid.
- 11. A method for determining whether an RNA molecule interacts with a test molecule, the method comprising:
providing a pRNA chimera comprising a pRNA region flanking a spacer region comprising the RNA molecule; immobilizing the pRNA chimera on a substrate; contacting the immobilized pRNA chimera with test molecule; and detecting whether the test molecule interacts with the RNA molecule.
- 12. A method for delivering a biologically active RNA to a cell comprising:
introducing into the cell a DNA molecule comprising a nucleotide sequence that operably encodes a pRNA comprising a pRNA region flanking a spacer region comprising a biologically active RNA; and causing transcription of the DNA to yield the biologically active RNA.
- 13. The method of claim 12 wherein the biologically active RNA is selected from the group consisting of a ribozyme, a siRNA, an RNA aptamer, an antisense RNA and a peptide nucleic acid (PNA).
- 14. The method of claim 12 wherein the cell is present in a cell culture, a tissue, an organ or an organism.
- 15. The method of claim 12 wherein the cell is a mammalian cell.
- 16. The method of claim 15 wherein the cell is a human cell.
- 17. A polyvalent multimeric complex comprising a plurality of the pRNA chimera of claim 1, the pRNA chimera comprising spacer regions comprising the same or different biologically active RNAs.
- 18. The polyvalent multimeric complex of claim 17 wherein at least one biologically active RNA comprises a ribozyme.
- 19. The polyvalent multimeric complex of claim 17 wherein at least one biologically active RNA comprises an anti-receptor RNA.
- 20. The polyvalent multimeric complex of claim 17 which is a pRNA hexamer.
- 21. A method for making a pRNA chimera that binds to a pre-identified substrate, the method comprising:
combining a 3′ DNA primer defined with reference to the 5′ end of a pRNA and a 5′ DNA primer defined with reference to the 3′ end of the phi29 pRNA with a population of DNA templates, each DNA template comprising a randomized DNA sequence flanked by a 5′ DNA sequence that binds to the 5′ DNA primer and a 3′ DNA sequence that binds to the 3′ DNA primer, under conditions to yield a population of pRNA chimeras, each pRNA chimera comprising a randomized RNA sequence; and screening the population of pRNA chimeras to identify at least one pRNA chimera that binds to the pre-identified substrate.
- 22. The method of claim 21 wherein the pre-identified substrate is a nucleotide or a polypeptide.
- 23. The method of claim 21 wherein the pre-identified substrate is a membrane-bound receptor molecule.
Parent Case Info
[0001] This application claims the benefit of U.S. provisional patent application Ser. No. 60/433,697, filed Dec. 16, 2002, and also is a continuation-in-part patent application of PCT/US01/26333, filed Aug. 23, 2001, which claims the benefit of U.S. provisional patent application Ser. No. 60/227,393, filed Aug. 23, 2000, each of which patent applications is incorporated herein by reference in its entirety.
STATEMENT OF GOVERNMENT RIGHTS
[0002] This invention was made with government support under grants from the National Institutes of Health (Grant No. GM59944 and Grant No. GM48159) and the National Science Foundation (Grant No. MCB-9723923). The government has certain rights in this invention.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60433697 |
Dec 2002 |
US |
|
60227393 |
Aug 2000 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
| Parent |
PCT/US01/26333 |
Aug 2001 |
US |
| Child |
10373612 |
Feb 2003 |
US |