Claims
- 1. A nucleic acid construct comprising:
a) a modified group II intron sequence comprising a sequence selected from the group consisting of a modified EBS1 sequence, a modified EBS2 sequence, a modified delta sequence, a partially deleted loop sequence in domain IV, and combinations thereof; and b) a promoter for regulating transcription of said modified group II intron sequence, said promoter being operably linked to said modified group II intron sequence.
- 2. The nucleic acid construct of claim 1, further comprising
an open reading frame sequence encoding a wild-type or modified group II intron encoded protein, wherein said open reading frame sequence is located upstream, or downstream, or within the modified group II intron sequence, and wherein expression of said group II intron encoded protein is regulated by the promoter which is operably linked to the modified group II intron sequence or by a second promoter which is operably linked to the open reading frame sequence.
- 3. The nucleic acid construct of claim 2 wherein the modified group II intron sequence comprises a deletion in the loop of domain IV and wherein the open reading frame sequence is upstream or downstream of the modified group II intron sequence.
- 4. The nucleic acid construct of claim 3 wherein the modified group II intron sequence further comprises a promoter.
- 5. The nucleic acid construct of claim 3 wherein the modified group II intron sequence further comprises one or a plurality of heterologous genes.
- 6. The nucleic acid construct of claim 3 wherein the modified group II intron is a modified L1.LtrB intron and wherein the open reading frame sequence encodes a wild-type or modified LtrA protein.
- 7. The nucleic acid construct of claim 3 wherein the group II intron encoded protein is modified at the N-terminus, the C-terminus, or internally and wherein the open reading frame encodes a fusion protein comprising a group II intron encoded protein linked to a purification tag, a detection tag, or an intracellular localization signal.
- 8. A method of preparing a modified ribonucleoprotein particle having nucleotide integrase activity comprising
a) introducing a DNA or RNA construct into a cell, said construct comprising
i.) a modified group II intron sequence comprising a sequence selected from the group consisting of a modified EBS1 sequence, a modified EBS2 sequence, a modified delta sequence, a partially deleted loop sequence in domain IV, and combinations thereof; ii) a promoter for regulating transcription of said modified group II intron, said promoter being operably linked to the modified group II intron sequence; iii) a flanking sequence upstream of the group II intron sequence, said first flanking sequence comprising a first hybridizing sequence which is complementary to the EBS1 sequence and a second hybridizing sequence which is complementary to the EBS2 sequence, said first hybridizing sequence being located between the second hybridizing sequence and the group II intron sequence; and iv) an open reading frame sequence encoding a wild-type or modified group II intron encoded protein, wherein said open reading frame is located upstream, or downstream of the modified group II intron sequence, and wherein expression of said group II intron encoded protein is regulated by the promoter which is operably linked to the modified group II intron sequence or by a second promoter which is operably linked to the open reading frame sequence; and b) maintaining the cell under conditions which allow for expression of the modified group II intron sequence and the open reading frame sequence and formation of modified RNP particle comprising a modified excised group II intron RNA which is encoded by the modified group II intron sequence and a group II intron encoded protein which is encoded by the open reading frame sequence.
- 9. The method of claim 8 wherein the modified group II intron sequence encodes a modified L1.LtrB intron RNA and wherein the open reading frame sequence encodes a wild-type or modified LtrA protein.
- 10. The method of claim 8 wherein the DNA construct is introduced into the cell via a viral vector.
- 11. The method of claim 8 wherein the DNA construct is introduced into the cell in association with a liposome.
- 12. The method of claim 8 wherein the DNA construct is introduced into the cell via a plasimid.
- 13. The method of claim 8 wherein the cell is an archaebacterial or eubacterial cell.
- 14. The method of claim 8 wherein the cell is a fungal cell, a plant cell or algae cell.
- 15. The method of claim 8 wherein the cell is an animal cell.
- 16. The method of claim 8 wherein the group II intron encoded protein is modified at the N-terminus, the C-terminus, or internally and wherein the open reading frame encodes a fusion protein comprising a group II intron encoded protein linked to a purification tag, an detection tag or an intracellular localization signal.
- 17. A method of preparing a modified ribonucleoprotein particle having nucleotide integrase activity comprising
a) introducing a DNA or RNA construct into a cell, said construct comprising
i.) a modified group II intron sequence comprising a sequence selected from the group consisting of a modified EBS1 sequence, a modified EBS2 sequence, a modified delta sequence, a partially deleted loop sequence in domain IV, and combinations thereof; ii) a promoter for regulating transcription of said modified group II intron, said promoter being operably linked to the modified group II intron sequence; iii) a first flanking sequence upstream of the group II intron sequence, said first flanking sequence comprising a first hybridizing sequence which is complementary to the EBS1 sequence and a second hybridizing sequence which is complementary to the EBS2 sequence, said first hybridizing sequence being located between the second hybridizing sequence and the group II intron sequence; and b) introducing a DNA or RNA construct into the cell, said construct comprising an open reading frame sequence encoding a wild-type or modified group II intron encoded protein and a promoter which is operably linked to the open reading frame sequence; and c) maintaining the cell under conditions which allow for expression of the modified group II intron sequence and the open reading frame sequence and formation of modified RNP particle comprising a modified excised group II intron RNA which is encoded by the modified group II intron sequence and a group II intron encoded protein which is encoded by the open reading frame sequence.
- 18. The method of claim 17 wherein the group II intron encoded protein is modified at the N-terminus, the C-terminus, or internally and wherein the open reading frame encodes a fusion protein comprising a group II intron encoded protein linked to a purification tag, a detection tag, or an intracellular localization signal.
- 19. A method of preparing a modified ribonucleoprotein particle having nucleotide integrase activity comprising
a) introducing a DNA or RNA construct into a cell comprising a wild-type or modified group II intron encoded protein, said construct comprising
i.) a modified group II intron sequence comprising a sequence or selected from the group consisting of a modified EBS1 sequence, a modified EBS2 sequence, a modified delta sequence, a partially deleted loop sequence in domain IV, and combinations thereof; ii) a promoter for regulating transcription of said modified group II intron, said promoter being operably linked to the modified group II intron sequence; iii) a flanking sequence upstream of the group II intron sequence, said first flanking sequence comprising a first hybridizing sequence which is complementary to the EBS1 sequence and a second hybridizing sequence which is complementary to the EBS2 sequence, said first hybridizing sequence being located between the second hybridizing sequence and the group II intron sequence; and b) maintaining the cell under conditions which allow for expression of the modified group II intron sequence and formation of a modified RNP particle comprising a modified excised group II intron RNA which is encoded by the modified group II intron sequence and said group II intron encoded protein.
- 20. A method for analyzing the catalytic activity and integrative activity of a modified nucleotide integrase comprising:
a) transforming a host cell with a donor nucleic acid construct and a recipient DNA construct; said donor construct comprising:
i.) a modified group II intron sequence comprising a modified sequence or nucleotide selected from the group consisting of a modified EBS1 sequence, a modified EBS2 sequence, a modified delta sequence, a partially deleted loop sequence in domain IV, and combinations thereof; ii) a promoter for regulating transcription of said modified group II intron, said promoter being operably linked to the modified group II intron sequence; iii) a flanking sequence upstream of the group II intron sequence, said first flanking sequence comprising a first hybridizing sequence which is complementary to the EBS1 sequence and a second hybridizing sequence which is complementary to the EBS2 sequence, said first hybridizing sequence being located between the second hybridizing sequence and the group II intron sequence iv) a second promoter which is within the group II intron sequence; and v) an open reading frame sequence encoding a wild-type or modified group II intron encoded protein, wherein said open reading frame is located upstream, downstream, or within the modified group II intron sequence, and wherein expression of said group II intron encoded protein is regulated by the promoter which is operably linked to the modified group II intron sequence or by a second promoter which is operably linked to the open reading frame sequence; said recipient DNA construct comprising a target sequence and a promoterless reporter gene downstream from the target sequence; and b) assaying the host cell for expression of the reporter gene, wherein expression of the reporter gene indicates that the modified nucleotide integrase which is formed in the cell is capable of catalyzing cleavage of the target sequence and inserting the modified group II intron sequence into the cleavage site.
- 21. A method for analyzing the catalytic activity and integrative activity of a modified nucleotide integrase comprising
a) transforming a host cell with a donor nucleic acid construct and a recipient DNA construct; said donor construct comprising:
i.) a modified group II intron sequence comprising a sequence selected from the group consisting of a modified EBS1 sequence, a modified EBS2 sequence, a modified delta sequence, a partially deleted loop sequence in domain IV, and combinations thereof; ii) a first promoter for regulating transcription of said modified group II intron, said promoter being operably linked to the modified group II intron sequence; iii) a flanking sequence upstream of the group II intron sequence, said first flanking sequence comprising a first hybridizing sequence which is complementary to the EBS1 sequence and a second hybridizing sequence which is complementary to the EBS2 sequence, said first hybridizing sequence being located between the second hybridizing sequence and the group II intron sequence, and iv) a second promoter which is within the group II intron sequence; said recipient DNA construct comprising:
i) a target sequence, ii) a promoterless reporter gene downstream from the target sequence, and iii) an open reading frame sequence encoding a wild-type or modified group II intron encoded protein, said open reading frame sequence wherein said open reading frame sequence is located downstream of the reporter gene or upstream of the target DNA, and b) assaying the host cell for expression of the reporter gene, wherein expression of the reporter gene indicates that the modified nucleotide integrase which is formed within the cell from an RNA encoded by the modified group II intron and the group II intron-encoded protein is capable of catalyzing cleavage of the target sequence and inserting the modified group II intron sequence into the cleavage site.
- 22. The method of claim 21 wherein the open reading sequence is located upstream of the target DNA, is operably linked to a promoter, and is oriented in an opposite direction of the reporter gene.
- 23. A method for analyzing the catalytic activity and integrative activity of a modified nucleotide integrase comprising
a) transforming a host cell with a donor nucleic acid construct and a recipient DNA construct; said host cell comprising a wild-type or modified group II intron encoded protein; said donor construct comprising:
(i.) a modified group II intron sequence comprising a sequence selected from the group consisting of a modified EBS1 sequence, a modified EBS2 sequence, a modified delta sequence, a partially deleted loop sequence in domain IV, and combinations thereof; (ii) a promoter for regulating transcription of said modified group II intron, said promoter being operably linked to the modified group II intron sequence; (iii) a flanking sequence upstream of the group II intron sequence, said first flanking sequence comprising a first hybridizing sequence which is complementary to the EBS1 sequence and a second hybridizing sequence which is complementary to the EBS2 sequence, said first hybridizing sequence being located between the second hybridizing sequence and the group II intron sequence (iv) a second promoter which is within the group II intron sequence said recipient DNA construct comprising:
(i) a target sequence, (ii) a promoterless reporter gene downstream from the target sequence, and b) assaying the host cell for expression of the reporter gene, wherein expression of the reporter gene indicates that the modified nucleotide integrase which is formed within the cell from an RNA encoded by the modified group II intron and from the group II intron-encoded protein is capable of catalyzing cleavage of the target sequence and inserting the modified group II intron sequence into the cleavage site.
- 24. A library of plasmids comprising group II intron sequences having randomly mutated EBS1 sequences, EBS2 sequences or both, said library made by a process comprising the following steps:
a) preparing a first pool of polymerase chain reaction (PCR) products using a template which comprises a full-length wild-type group II intron DNA sequence flanked by from 1 to 26 nucleotides of the wild-type 5′ exon and two sets of primer pairs, said first set of primer pairs comprising
i) a sense primer comprising in the following order a first region having a sequence which is complementary to the flanking sequence of the template, a second region comprising from 2 to 13 randomized nucleotide positions, and a third region having a sequence which is complementary to an intron sequence located downstream from the 5′ end of the intron and upstream of the EBS2 sequence, and ii) an antisense primer comprising a sequence which is complementary to a downstream intron sequence, said downstream intron sequence being located upstream of the EBS2 sequence; said second set of primer pairs comprising:
i) a sense primer comprising in the following order a first region which is complementary to to an intron sequence upstream of the EBS2 sequence, a second region comprising from 2 to about 6 randomized nucleotides in the region of the EBS2 sequence, and a third region having a sequence which is complementary to an intron sequence that is downstream of the EBS2 sequence, and ii) an antisense primer which comprises in the following order a first region having a sequence which is complementary to an intron sequence which is downstream of the EBS1 sequence, a second region comprising from 2 to 11 randomized nucleotide positions, and a third region having a sequence which is complementary to an intron sequence upstream of the delta and EBS1 sequence; wherein said PCR products made using the first set of primer pairs comprise a 3′ sequence which partially overlaps with the 5′ sequence of the PCR product made using the second set of primer pairs; b) preparing a second pool of PCR products using the PCR products of step (a) as a template and a set of primer pairs comprising
i) a sense primer comprising in the following order:
a restriction enzyme site, a first region having a sequence which is complementary to the flanking sequence of the template, a second region comprising from 2 to 13 randomized nucleotide positions, and a third region having a sequence which is complementary to an intron sequence located downstream from the 5′ end of the intron and upstream of the EBS2 sequence, and ii) an antisense primer which comprises in the following order:
a restriction enzyme site; a first region having a sequence which is complementary to an intron sequence which is downstream of the EBS1 sequence, a second region comprising from 2 to 11 randomized nucleotide positions, and a third region having a sequence which is complementary to an intron sequence upstream of the delta and EBS1 sequence, c) cloning the PCR products of step b into a plasmid comprising the corresponding group II intron DNA sequence which has been modified to contain the same restriction sites.
- 25. A method for simultaneously analyzing two or more modified nucleotide integrases comprising the steps of:
(a) providing a plasmid pool comprising a first donor nucleic acid construct comprising a first modified group II intron sequence and a second donor nucleic acid construct comprising a second modified group II intron sequence, wherein the first modified group II intron sequence is different from the second modified group II intron sequence, wherein the modified group II intron sequence in each donor plasmid further comprises a promoter, and wherein each donor construct further comprises a sequence encoding a wild-type or modifed group II intron encoding protein, said protein encoding sequence being upstream or downstream from the group II intron sequence; (b) providing a recipient DNA construct comprising a target sequence and a promoterless reporter gene downstream from said target sequence; (c) transforming a group of host cells with said recipient DNA construct, said first donor nucleic acid construct, and said second nucleic acid construct; (d) assaying the transformants for expression of the reporter gene to obtain cells which comprise a target sequence comprising the first modified group II intron sequence or the second modified group II intron sequence; and (e) determining the sequences of the modified group II introns that have been inserted into the target sequence of said transformants.
- 26. A method of identifying a target sequence of a transposon comprising:
a) transforming a host cell with a donor nucleic acid construct and a recipient DNA construct; said donor construct comprising:
i.) a modified transposon sequence comprising a promoter within said sequence; and ii) a promoter for regulating transcription of said modified transposon sequence or a promotor for regulating expression of genes which encode proteins required for transposition of the transposon; said recipient DNA construct comprising
i) a test sequence, ii) a promoterless reporter gene downstream from the test sequence, and b) assaying the host cell for expression of the reporter gene, wherein expression of the reporter gene indicates that the test sequence is a target sequence for said transposon.
- 27. A method of identifying a functional modified transposon comprising
a) transforming a host cell with a donor nucleic acid construct and a recipient DNA construct; said donor construct comprising:
i.) a modified transposon sequence comprising a promoter within said sequence, and ii) a promoter for regulating transcription of said modified test transposon sequence or a promotor for regulation expression of genes encoding protein required for transposition of the transposon; said recipient DNA construct comprising:
i) target sequence for a wild-type transposon, ii) a promoterless reporter gene downstream from the target sequence, and b) assaying the host cell for expression of the reporter gene, wherein expression of the reporter gene in the host cell indicates that the modified transposon is capable of inserting into the target sequence.
- 28. A method of randomly mutagenizing chromosomal DNA, comprising:
a) introducing a library of DNA constructs comprising group II intron sequences with randomly mutagenized IBS, EBS and delta sequences into a pool of cells comprising said double-stranded DNA molecule, wherein substantially all of said DNA constructs in said library comprise a modified group II intron sequence operably linked to a promoter and an open reading frame encoding a wild-type or modified group II inton-encoded protein; and b) culturing the cells under conditions which allow for transcription of the group II intron sequence of each DNA construct, expression of the group II intron encoded protein which is encoded by said DNA construct, formation of a nucleotide integrase comprising an RNA excised from said transcript and said protein, and cleavage of the chromosomal DNAs by said nucleotide integrase, and insertion of the group II introns into different chromosomal DNA sites.
- 29. A method of obtaining targeting rules for a group II intron, comprising:
a.) transforming a pool of cells with a donor DNA construct and a plurality of recipient DNA constructs, wherein said donor construct comprises:
i) a modified group II intron sequence comprising a promoter; ii) a promoter for regulating transcription of said modified group II intron sequence, said promoter being operably linked to the modified group II intron sequence; iii) a flanking sequence upstream of the group II intron sequence, said flanking sequence comprising a first hybidizing sequence which is complementary to the EBS 1 sequence in said group II intron and a second hybridizing sequence which is complementary to the EBS 1 sequence in said group II intron; said first hybridizing sequence being located between the second hybridizing sequence and the group II intron sequence; iv) an open reading frame sequence encoding a wild-type or modified group II intron encoded protein, wherein said open reading frame sequence is located upstream, downstream, or within the modified group II intron sequence, and wherein expression of said group II intron encoded protein is regulated by the promoter which is operably linked to the modified group II intron sequence or by a second promoter which is operably linked to the open reading frame sequence; and wherein each of said recipient DNA constructs comprises a wild-type or a randomly mutated target sequence and a promoterless reporter gene downstream from the target sequence; b) assaying the hosts cells for expression of the reporter gene; c) determining the sequences of the randomized regions in the original pool of the recipient constructs and the isolated intron integration products; d) determining the nucleotide frequencies at each position in the randomized region before and after selection; e) comparing the ratio of each mutant to wild-type nucleotide at each position before and after selection using the following equation: [(Rmut/WT) selected divided by (Rmut/WT) pool] minus 1; wherein a value below 0 indicates the mutant nucleotide is selected against; wherein a value above 0 indicates the mutant nucleotide is selected for; and a value of 0 indicates the mutant nucleotide has a neutral effect.
- 30. A method of obtaining targeting rules for a group II intron, comprising:
a.) transforming a pool of cells with a plurality of donor DNA constructs and a recipient DNA construct, wherein each of said donor constructs comprises:
i) a modified group II intron sequence comprising a promoter and a randomly mutagenized IBS sequence, EBS sequence, delta sequence, and combinations thereof, ii) a promoter for regulating transcription of said modified group II intron sequence, said promoter being operably linked to the modified group II intron sequence; iii) a flanking sequence upstream of the group II intron sequence, said flanking sequence comprising a first hybidizing sequence which is complementary to the EBS 1 sequence in said group II intron and a second hybridizing sequence which is complementary to the EBS 1 sequence in said group II intron; said first hybridizing sequence being located between the second hybridizing sequence and the group II intron sequence; iv) an open reading frame sequence encoding a wild-type or modified group II intron encoded protein, wherein said open reading frame sequence is located upstream, downstream, or within the modified group II intron sequence, and wherein expression of said group II intron encoded protein is regulated by the promoter which is operably linked to the modified group II intron sequence or by a second promoter which is operably linked to the open reading frame sequence; and wherein said recipient DNA construct comprises a wild-target sequence and a promoterless reporter gene downstream from the target sequence; b) assaying the hosts cells for expression of the reporter gene; c) determining the sequences of the randomized regions in the original pool of the donor constructs and the isolated intron integration products; d) determining the nucleotide frequencies at each position in the randomized region before and after selection; e) comparing the ratio of each mutant to wild-type nucleotide at each position before and after selection using the following equation: [(Rmut/WT) selected divided by (Rmut/WT) pool] minus 1; wherein a value below 0 indicates the mutant nucleotide is selected against; wherein a value above 0 indicates the mutant nucleotide is selected for; and a value of 0 indicates the mutant nucleotide has a neutral effect.
Government Interests
[0001] This work was supported by NIH grant GM37949. The government has certain rights in this invention.
Continuations (1)
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Number |
Date |
Country |
Parent |
09687944 |
Oct 2000 |
US |
Child |
10277643 |
Oct 2002 |
US |