IP Library Granted Patent US 11,649,450
Granted Patent B2
US 11,649,450 · App. 16/627,077 · Granted May 16, 2023

Methods of making proteins with non-standard amino acids

Inventors: Aditya Mohan Kunjapur (Cambridge, MA); George M. Church (Brookline, MA)
Assignee: President and Fellows of Harvard College
C12N15/1058C12N9/52C12N9/93C12N15/74C12N15/90C12Y601/01
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Quick Facts
Patent No.
US 11,649,450
App. No.
16/627,077
Granted
May 16, 2023
Kind
B2
Abstract

The disclosure provides methods of making a protein having a desired non-standard amino acid incorporated at its N-terminus in a cell and methods of screening for an amino acyl tRNA synthetase variant that preferentially selects a non-standard amino acid against its standard amino acid counterpart or undesired non-standard amino acids for incorporation into a protein in a cell.

Claims (24)

1. A method of degrading polypeptides expressed by a cell from a first foreign nucleic acid sequence encoding a polypeptide including a target nonstandard amino acid (NSAA) at an amino acid target location and a removable protecting group at the N-terminal end of the polypeptide, wherein the cell includes a second foreign nucleic acid sequence encoding an engineered amino-acyl tRNA synthetase and transfer RNA pair corresponding to the target non-standard amino acid, comprising

expressing the first and second nucleic acid sequences to produce (1) a polypeptide with the target NSAA at the amino acid target location and with the removable protecting group at the N-terminal end of the polypeptide, and one or more of (2) a polypeptide with a nontarget NSAA at the amino acid target location and with the removable protecting group at the N-terminal end of the polypeptide, or (3) a polypeptide with a standard amino acid at the amino acid target location and with the removable protecting group at the N-terminal end of the polypeptide,

removing the removable protecting group from the polypeptides, such that an N-terminal end amino acid is exposed at the amino acid target location of the polypeptides, and

degrading one or more of the polypeptide with the nontarget NSAA at the amino acid target location and the polypeptide with the standard amino acid at the amino acid target location using a Colipase (ClpS)-Colipase ATP-dependent (ClpS-ClpAP) protease system, and wherein the ClpS is a protein having the amino acid sequence of SEQ ID NO:149 with a V43I mutation or a L32F mutation.

2. The method of claim 1 wherein the removable protecting group is a protein that is cleavable by a corresponding enzyme.

3. The method of claim 1 wherein the removable protecting group is ubiquitin that is cleavable by ubiquitin-specific protease 1 (Ubp1).

4. The method of claim 1 wherein a detectable moiety is attached to the C-terminal end of the polypeptides.

5. The method of claim 1 wherein a detectable moiety is attached to the C-terminal end of the polypeptides, wherein the detectable moiety is a fluorescent moiety.

6. The method of claim 1 wherein a detectable moiety is attached to the C-terminal end of the polypeptides, wherein the detectable moiety is a reporter protein.

7. The method of claim 1 wherein the nonstandard amino acid is encoded by a corresponding nonsense or sense codon.

8. The method of claim 1 wherein the cell is genetically modified to include a foreign nucleic acid sequence encoding an enzyme for cleaving the removable protecting group under influence of a constitutive or an inducible promoter.

9. The method of claim 1 wherein expression of ClpS is upregulated.

10. The method of claim 1 wherein expression of ClpS is under influence of a constitutive or an inducible promoter.

11. The method of claim 1 wherein a detectable moiety is attached to the C-terminal end of the polypeptides and further comprising detecting the detectable moiety as a measure of the amount of the polypeptide including the non-standard amino acid within the cell.

12. The method of claim 1 wherein the cell is a prokaryotic cell or a eukaryotic cell.

13. The method of claim 1 wherein the cell is a bacterium.

14. The method of claim 1 wherein the cell is a genetically modified E. coli.

15. An engineered cell comprising

(a) a first foreign nucleic acid sequence encoding a polypeptide including a target non-standard amino acid (NSAA) at an amino acid target location, a removable protecting group attached to the polypeptide adjacent to the amino acid target location and a detectable moiety attached to the C-terminal end of the polypeptide;

(b) a second foreign nucleic acid sequence encoding an amino-acyl tRNA synthetase and a transfer RNA corresponding to the target nonstandard amino acid; and

(c) a third nucleic acid sequence encoding a Colipase (ClpS)-Colipase ATP-dependent (ClpS-ClpAP) protease system, wherein the ClpS is under influence of a constitutive promoter or an inducible promoter and wherein the ClpS is a protein having the amino acid sequence of SEQ ID NO:149 with a V43I mutation or a L32F mutation.

16. An engineered cell comprising a nucleic acid construct encoding a Colipase (ClpS) protein having the amino acid sequence of SEQ ID NO:149 with a V43I mutation or a L32F mutation.

17. A nucleic acid construct encoding a polypeptide including a non-standard amino acid at an amino acid target location, a removable protecting group attached to the polypeptide adjacent to the amino acid target location and a detectable moiety attached to the C-terminal end of the polypeptide, and a Colipase (ClpS) protein having the amino acid sequence of SEQ ID NO:149 with a V43I mutation or a L32F mutation.

18. A nucleic acid construct encoding a Colipase (ClpS) protein having the amino acid sequence of SEQ ID NO:149 with a V43I mutation or a L32F mutation.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2023
From: KUNJAPUR, ADITYA MOHAN; CHURCH, GEORGE M.
To: PRESIDENT AND FELLOWS OF HARVARD COLLEGE
Reel/Frame 062989/0564 →
CONFIRMATORY LICENSE Recorded Jun 9, 2022
From: HARVARD UNIVERSITY
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 060316/0672 →
Continuity (2)
Provisional Application 62526671 · Jun 29, 2017
Related Publication 20200140852A1 · May 7, 2020