IP Library Granted Patent US 11,965,192
Granted Patent B2
US 11,965,192 · App. 17/537,941 · Granted Apr 23, 2024

Penicillin-G acylases

Inventors: Jovana Nazor (Milpitas, CA); Vesna Mitchell (Santa Clara, CA); David Elgart (San Mateo, CA); Katrina W. Lexa (Santa Rosa, CA); Nikki Dellas (San Carlos, CA); Robert Kevin Orr (Cranford, NJ); Oscar Alvizo (Fremont, CA); Ravi David Garcia (Los Gatos, CA); Judy Victoria Antonio Viduya (Greenbrae, CA); Courtney Dianne Moffett (San Francisco, CA)
Assignee: Codexis, Inc.
C12N9/84C07K14/62C12P21/02C12Y305/01011
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Quick Facts
Patent No.
US 11,965,192
App. No.
17/537,941
Filed
Nov 30, 2021
Granted
Apr 23, 2024
Kind
B2
Art Unit
1656
USPC
435/44
Abstract

The present invention provides engineered penicillin G acylase (PGA) enzymes having improved properties, polynucleotides encoding such enzymes, compositions including the enzymes, and methods of using the enzymes.

Claims (10)

1. A method for producing phenyl acetate mono-protected or di-protected insulin, comprising: i) providing an engineered penicillin G acylase having a polypeptide sequence that is at least 95% identical to SEQ ID NO: 1220, wherein said penicillin G acylase comprises a leucine residue at position X2 as compared to the sequence of SEQ ID NO: 1220 and free insulin; and ii) exposing said engineered penicillin G acylase to said insulin, under conditions such that said engineered penicillin G acylase acylates up to two positions selected from the group of positions consisting of the A1 position of insulin, the B1 position of insulin, and the B29 position of insulin, thereby producing mono-protected or di-protected insulin.

2. The method of claim 1 , wherein said penicillin G acylase acylates the A1 position of said insulin.

3. The method of claim 1 , wherein said penicillin G acylase acylates the B1 position of said insulin.

4. The method of claim 1 , wherein said penicillin G acylase acylates the B29 position of said insulin.

5. The method of claim 1 , wherein said engineered penicillin G acylase produces more than 90% phenyl acetate mono-protected or di-protected insulin, as compared to the production of phenyl acetate mono-protected or di-protected insulin by the polypeptide of SEQ ID NO:2.

6. A method for producing phenyl acetate mono-protected or di-protected insulin, comprising: i) providing an engineered penicillin G acylase having a polypeptide sequence that is at least 95% identical to SEQ ID NO: 1220, wherein said penicillin G acylase comprises a leucine residue at position X2 as compared to the sequence of SEQ ID NO: 1220 and insulin; and ii) exposing said engineered penicillin G acylase to said insulin, under conditions such that said engineered penicillin G acylase adds up to two tri-phenyl acetate protecting groups selected from the group consisting of the A1, B1 and B29 tri-phenyl acetate protecting groups to said insulin thereby producing phenyl acetate mono-protected or di-protected insulin.

7. The method of claim 6 , wherein said penicillin G acylase adds the A1 tri-phenyl acetate protecting group of said insulin.

8. The method of claim 6 , wherein said penicillin G acylase adds the B1 tri-phenyl acetate protecting group of said insulin.

9. The method of claim 6 , wherein said penicillin G acylase adds the B29 tri-phenyl acetate protecting group of said insulin.

10. The method of claim 6 , wherein said engineered penicillin G acylase produces more than 90% phenyl acetate mono-protected or di-protected insulin, as compared to the production of phenyl acetate mono-protected or di-protected insulin by the polypeptide of SEQ ID NO:2.