IP Library › Granted Patent US 9,783,790
Granted Patent B2
US 9,783,790 · App. 14/233,024 · Granted Oct 10, 2017

Trichoplusia ni piggybac transposases with reduced integration activity

Inventor: Nancy L. Craig (Baltimore, MD)
Assignee: The Johns Hopkins University
C12N9/1241C12N9/22C12N15/79C12N15/81C12N15/85C12N15/907C12N2800/90
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Quick Facts
Patent No.
US 9,783,790
App. No.
14/233,024
Granted
Oct 10, 2017
Kind
B2
Abstract

The present invention is directed to nucleic acid and amino acid sequences of a novel piggyBac transposase enzymes created by modifying the transposase of Trichoplusia ni . The piggyBac transposases of the present invention are functionally active or hyperactive for excision and have decreased integration activity compared to wild type Trichoplusia ni piggyBac transposase enzyme. These transposases are ideal for use in methods of transforming cells and organisms. In particular embodiments, the present invention provides methods of transient integration and expression of transgenes.

Claims (21)

1. A mutagenized Trichoplusia ni piggyBac transposase mutagenized to exhibit enhanced piggyBac transposon excision activity and no or significantly diminished piggyBac transposon integration as compared to a wild type Trichoplusia ni piggyBac transposase comprising replacement in SEQ ID NO:52 of one or more arginines at amino acid positions 65, 95, 97, 135, 161, 192, and 208 with alanine or glutamate, and/or one or more lysines at amino acid positions 176 and 195 with alanine or glutamate, and

wherein said SEQ ID NO:52 is amino acid residues 181-540 of said wild type Trichoplusia ni piggyBac transposase.

2. The mutagenized transposase according to claim 1 , wherein the lysine at amino acid position 176 in SEQ ID NO:52 is replaced with glutamate.

3. The mutagenized transposase according to claim 1 further comprising replacement of the serine at amino acid position 171 in SEQ ID NO:52 with glutamate.

4. A mutagenized Trichoplusia ni piggyBac transposase mutagenized to exhibit enhanced piggyBac transposon excision activity and no or significantly diminished piggyBac transposon integration as compared to a wild type Trichoplusia ni piggyBac transposase, wherein a lysine at amino acid position 195 in SEQ ID NO:52 is replaced with alanine and/or an arginine at amino acid position 192 in SEQ ID NO:52 is replaced with alanine, wherein said SEQ ID NO:52 is amino acid residues 181-540 of said wild type Trichoplusia ni piggyBac transposase.

5. The mutagenized transposase according to claim 4 , further comprising replacement of a methionine at amino acid position 14 in SEQ ID NO:52 with valine.

6. The mutagenized transposase according to claim 4 , further comprising replacement of an aspartate at amino acid position 270 in SEQ ID NO:52 with asparagine.

7. A mutagenized Trichoplusia ni piggyBac transposase mutagenized to exhibit enhanced piggyBac transposon excision activity and no or significantly diminished piggyBac transposon integration as compared to a wild type Trichoplusia ni piggyBac transposase comprising replacement in SEQ ID NO:52 of a lysine at amino acid position 195 with alanine and/or replacement in SEQ ID NO:52 of an arginine at amino acid position 192 with alanine and replacement in SEQ ID NO:52 of a methionine at amino acid position 14 with valine or replacement in SEQ ID NO:52 of an aspartate at amino acid position 270 with asparagine, wherein said SEQ ID NO:52 is amino acid residues 181-540 of said wild type Trichoplusia ni piggyBac transposase.

8. A method of reversibly transforming a cell comprising the steps of:

using a piggyBac transposon to insert a nucleic acid sequence into the genome of the cell thereby transforming the cell; and

exposing the cell to a mutagenized Trichoplusia ni piggyBac transposase mutagenized to exhibit enhanced piggyBac transposon excision activity and no or significantly diminished piggyBac transposon integration as compared to a wild type Trichoplusia ni piggyBac transposase, thereby removing the nucleic acid sequence,

wherein said mutagenized transposase comprises a replacement in SEQ ID NO:52 of one or more arginines at amino acid positions 65, 95, 97, 135, 161, 192, and 208 with alanine or glutamate, and/or one or more lysines at amino acid positions 176 and 195 with alanine or glutamate, and

wherein said SEQ ID NO:52 is amino acid residues 181-540 of said wild type Trichoplusia ni piggyBac transposase.

9. The method according to claim 8 , wherein in the mutagenized transposase further comprises a replacement in SEQ ID NO:52 of the serine at amino acid position 171 with glutamate.

10. A method of reversibly transforming a cell comprising the steps of:

using a piggyBac transposon to insert a nucleic acid sequence into the genome of the cell thereby transforming the cell; and

exposing the cell to a mutagenized Trichoplusia ni piggyBac transposase mutagenized to exhibit enhanced piggyBac transposon excision activity and no or significantly diminished piggyBac transposon integration as compared to a wild type Trichoplusia ni piggyBac transposase, thereby removing the nucleic acid sequence,

wherein in the mutagenized transposase comprises a lysine at amino acid position 195 in SEQ ID NO:52 replaced with alanine and/or an arginine at amino acid position 192 in SEQ ID NO:52 replaced with alanine, and

wherein said SEQ ID NO:52 is amino acid residues 181-540 of said wild type Trichoplusia ni piggyBac transposase.

11. The method according to claim 10 , wherein the mutagenized transposase further comprises replacement of a methionine at amino acid position 14 in SEQ ID NO:52 with valine.

12. The method according to claim 10 , wherein the mutagenized transposase further comprises replacement of an aspartate at amino acid position 270 in SEQ ID NO:52 the with asparagine.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2017
From: HOWARD HUGHES MEDICAL INSTITUTE
To: THE JOHNS HOPKINS UNIVERSITY
Reel/Frame 043524/0672 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2017
From: CRAIG, NANCY L.
To: HOWARD HUGHES MEDICAL INSTITUTE
Reel/Frame 043524/0807 →
Continuity (2)
Provisional Application 61508386 · Jul 15, 2011
Related Publication 20140287513A1 · Sep 25, 2014