IP Library Granted Patent US 10,696,953
Granted Patent B2
US 10,696,953 · App. 15/543,535 · Granted Jun 30, 2020

Ketoreductase polypeptides for the synthesis of chiral compounds

Inventors: Oscar Alvizo (Fremont, CA); Nicholas J. Agard (San Francisco, CA); Xinkai Xie (Castro Valley, CA); David Entwistle (San Carlos, CA); Birgit Kosjek (Westfield, NJ)
Assignee: Codexis, Inc.
C12N9/0006C12P7/02C12P7/40C12P17/12C12P41/002C12Y101/01184
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Quick Facts
Patent No.
US 10,696,953
App. No.
15/543,535
Granted
Jun 30, 2020
Kind
B2
Abstract

The present disclosure provides engineered ketoreductase enzymes having improved properties as compared to a naturally occurring wild-type ketoreductase enzyme. Also provided are polynucleotides encoding the engineered ketoreductase enzymes, host cells capable of expressing the engineered ketoreductase enzymes, and methods of using the engineered ketoreductase enzymes to synthesize a variety of chiral compounds.

Claims (35)

1. An engineered polypeptide comprising an amino acid sequence with at least 90% sequence identity to SEQ ID NO:4 and an arginine or lysine at position X249 as compared to SEQ ID NO:4, and wherein said polypeptide has ketoreductase activity with at least 2-fold greater selectivity to the chiral compound 2a relative to chiral compound 2c as compared to SEQ ID NO:4.

2. The engineered polypeptide of claim 1 , wherein said amino acid sequence further comprises at least one of the following:

the residue corresponding to X68 is a non-polar, or aliphatic residue;

the residue corresponding to X102 is an acidic residue;

the residue corresponding to X110 is an acidic, or aromatic residue;

the residue corresponding to X114 is a non-polar residue;

the residue corresponding to X135 is a basic residue;

the residue corresponding to X144 is a non-polar, or aromatic residue;

the residue corresponding to X147 is a non-polar, or aliphatic residue;

the residue corresponding to X149 is a polar residue;

the residue corresponding to X153 is a polar, or aromatic residue;

the residue corresponding to X158 is a non-polar, or aliphatic residue;

the residue corresponding to X175 is a polar residue;

the residue corresponding to X190 is an aromatic, aliphatic, non-polar, or polar residue;

the residue corresponding to X196 is an aromatic, polar, basic, non-polar, or aliphatic residue;

the residue corresponding to X197 is an aromatic residue;

the residue corresponding to X198 is a non-polar, polar residue;

the residue corresponding to X201 is a polar residue;

the residue corresponding to X202 is an aromatic, or basic residue;

the residue corresponding to X203 is an aromatic, non-polar, or aliphatic residue;

the residue corresponding to X205 is a polar residue;

the residue corresponding to X206 is an aromatic residue;

the residue corresponding to X207 is an aromatic, acidic, non-polar, or aliphatic residue;

the residue corresponding to X209 is an aromatic, acidic, non-polar, polar, or aliphatic residue;

the residue corresponding to X210 is a non-polar, or aliphatic residue;

the residue corresponding to X212 is an aromatic, basic, non-polar, aliphatic, or acidic residue;

the residue corresponding to X213 is an aromatic, basic, acidic, polar, non-polar, or aliphatic residue;

the residue corresponding to X217 is a polar, or aromatic residue;

the residue corresponding to X233 is a polar residue;

the residue corresponding to X250 is a non-polar residue; and

the residue corresponding to X252 is an aromatic residue.

3. The engineered polypeptide of claim 1 , further comprising at least one substitution selected from X68V, X94G/Q, X102D, X110E/W, X114G, X135K, X144G/W, X147L, X149S, X150D/F/P/W, X153H/P/T/V/C, X158V, X175T, X190A/L/Q/T/W, X196H/I/K/N/Q, X1961, X196K/N/Q, X197Y, X198G/S, X201N, X202F/H/R/Y, X203G/L/W, X205T, X206H/W/Y, X207D/G/V/Y, X209E/F/G/I/M/T/V/W, X210L/P, X211H/I/P/S, X212A/E/G/H/N/P/RN, X213D/E/G/H/K/M/N/R, X217H/N, X233Q/T, X250G, and X252W.

4. The engineered polypeptide of claim 1 , further comprising a substitution at position X190.

5. The engineered polypeptide of claim 4 , comprising a substitution at position X190, wherein the substitution is selected from P, A, T, or Q.

6. The engineered polypeptide claim 1 , wherein the stereoselective activity of the polypeptide is increased at least 2-fold as compared to the corresponding activity of the reference polypeptide of SEQ ID NOS:4, 10, 26, and/or 42.

Assignments (2)
SECURITY INTEREST Recorded Feb 15, 2024
From: CODEXIS, INC.
To: INNOVATUS LIFE SCIENCES LENDING FUND I, LP, AS COLLATERAL AGENT
Reel/Frame 066600/0650 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2024
From: ALVIZO, OSCAR; AGARD, NICHOLAS; ENTWISTLE, DAVID; XIE, XINKAI; KOSJEK, BIRGIT; MERCK SHARPE & DOHME CORP; MERCK SHARPE & DOHME CORP
To: CODEXIS, INC.
Reel/Frame 066418/0806 →
Continuity (2)
Provisional Application 62114380 · Feb 10, 2015
Related Publication 20180002676A1 · Jan 4, 2018
Cited By (1)
US 12,410,410