Claims
- 1. A method to diversify the chemical composition of proteins produced in vivo by a cell comprising the step of disabling the editing function of at least one aminoacyl tRNA synthetase of the cell.
- 2. A method for producing in vivo proteins comprising at least one noncanonical amino acid comprising the step of:
a) selecting a cell strain wherein the editing function of at least one aminoacyl tRNA synthetase of the cell has been disabled by mutagenesis, said disabled editing function allowing the aminoacyl tRNA synthetase to mischarge the cognate tRNA with said at least one noncanonical amino acid; b) culturing the selected strain in a culture medium comprising said noncanonical amino acid, or one of its precursors, under conditions favorable for the growth of said strain; and c) recovering from the culture medium or from the cells obtained in step b) the proteins containing said noncanonical amino acid.
- 3. The method according to claim 1 or 2, wherein the cell strain comprises a mutation in the DNA sequence encoding the editon domain of said disabled aminoacyl tRNA synthetase compared to the wild type aminoacyl tRNA synthetase coding sequence.
- 4. The method according to claim 3, wherein said DNA mutation leads to at least an amino acid mutation in the editing domain of said aminoacyl tRNA synthetase.
- 5. The method according to claim 3, wherein said DNA mutation leads to at least an amino acid substitution in the editing domain of said aminoacyl tRNA synthetase.
- 6. The method according to claim 5, wherein said mutation leads to a single amino acid substitution in the editing domain of said aminoacyl tRNA synthetase.
- 7. The method according to one of claims 1 or 2, wherein the disabled aminoacyl tRNA synthetase is capable of mischarging its cognate tRNA with a canonical amino acid sterically similar to the amino acid charged by the wild type aminoacyl tRNA synthetase.
- 8. The method according to one of claims 1 or 2, wherein the disabled aminoacyl tRNA synthetase is capable of mischarging its cognate tRNA with a noncanonical amino acid sterically similar to the amino acid charged by the wild type aminoacyl tRNA synthetase on its cognate tRNA.
- 9. A method for obtaining cells capable of producing in vivo proteins comprising at least one noncanonical amino acid comprising the step of mutagenizing the DNA sequence encoding the editing domain of an aminoacyl tRNA synthetase in a cell, said mutagenizing leading to an aminoacyl tRNA synthetase variant having an amino acid mutation in its editing domain and said mutation allowing the aminoacyl tRNA synthetase variant to mischarge its cognate tRNA with said at least one noncanonical amino acid.
- 10. A method for obtaining cells capable of producing in vivo proteins comprising at least one noncanonical amino acid according to claim 9, comprising the steps of:
a) assaying the ability of an aminoacyl tRNA synthetase variant having an amino acid mutation in its editing domain for its ability to mischarge its cognate tRNA with a noncanonical amino acid; b) mutagenizing the DNA sequence encoding the editing domain of said aminoacyl tRNA synthetase in a cell, said mutagenizing leading to the aminoacyl tRNA synthetase variant assayed in step a) and capable of producing detectable noncanonical amino acid mischarging; c) optionally, identifying, selecting and/or cloning the cells containing such aminoacyl tRNA synthetase variant having the ability to mischarge one noncanonical amino acid.
- 11. The method of one of claims 1, 2, 9 or 10, wherein the cell is a microbial or animal cell.
- 12. The method of claim 11, wherein said microbial is a bacterium, a yeast or a fungus.
- 13. The method of claim 12, wherein said bacterium is Escherichia coli or Acinetobacter.
- 14. The method of one of claims 1, 2, 9 or 10, wherein the editing domain of the aminoacyl tRNA synthetase has been disabled or mutagenized by homologous recombination.
- 15. The method of one of claims 1, 2, 9 or 10, wherein the editing domain of the aminoacyl tRNA synthetase has been mutagenized by recombination into the genome of the target cell using an allelic replacement vector.
- 16. A method for selecting an aminoacyl tRNA synthetase variant capable of mischarging its cognate tRNA with a noncanonical amino acid, comprising the steps of:
a) elaborating a DNA construct comprising a DNA sequence encoding an aminoacyl tRNA synthetase variant wherein said aminoacyl tRNA synthetase variant has at least an amino acid mutation in its editing domain compared with the wild type aminoacyl tRNA synthetase; b) transforming a host cell with the DNA construct of step a) and, after a step of culturing said transformed host cell, recovering and, optionally, purifying the recombinant aminoacyl tRNA synthetase variant expressed by the host cell; c) assaying the ability of the recombinant aminoacyl tRNA synthetase variant recovered in step b) for its ability to mischarge its cognate TRNA with a noncanonical amino acid; and d) selecting said aminoacyl tRNA synthetase variant if detectable mischarging has been produced in step c).
- 17. Isolated aminoacyl tRNA synthetase variant capable of mischarging its cognate tRNA with a noncanonical amino acid, obtainable by the method of claim 16.
- 18. Isolated nucleic acid sequence encoded the aminoacyl tRNA synthetase variant of claim 17.
- 19. Vector comprising a nucleic acid of claim 18.
- 20. Transformed cell comprising a nucleic acid encoding an aminoacyl tRNA synthetase variant of claim 17.
- 21. Method for the production of proteins comprising a noncanonical amino acid characterized in that said method comprises the following steps:
a) culturing a cell of claim 20 in a culture medium comprising the noncanonical amino acid, or one of its precursors, capable of being mischarged by the cognate tRNA of the aminoacyl tRNA synthetase variant contained in said cell; and b) recovering the proteins comprising said noncanonical amino acid from the culture medium or from the cells of step a).
- 22. An isolated protein comprising a noncanonical amino acid obtained by the method of claims 1, 2 or 21.
- 23. The method of one of claims 1, 2, 9, 10 or 21, wherein the aminoacyl tRNA synthetase is an aminoacyl tRNA synthetase selected from the group consisting of the aminoacyl tRNA synthetase valyl-tRNA synthetase, isoleucyl-tRNA synthetase, leucyl-tRNA synthetase, alanyl-tRNA synthetase, prolyl-tRNA synthetase, threonyl-tRNA synthetase, phenyl-tRNA synthetase and lysyl-tRNA synthetase.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of earlier-filed U.S. provisional application serial No. 60/285,495, filed Apr. 19, 2001, which application is incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60285495 |
Apr 2001 |
US |