IP Library › Granted Patent US 6,969,611
Granted Patent B2
US 6,969,611 · App. 09/925,236 · Granted Nov 29, 2005

Methods to prepare cells comprising heterologous polyketide synthase expression systems

Assignees: The Board of Trustees of the Leland Stanford University; The John Innes Institute
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Quick Facts
Patent No.
US 6,969,611
App. No.
09/925,236
Granted
Nov 29, 2005
Kind
B2
Abstract

Novel polyketides and novel methods of efficiently producing both new and known polyketides, using recombinant technology, are disclosed. In particular, a novel host-vector system is described which is used to produce polyketide synthases which in turn catalyze the production of a variety of polyketides.

Claims (17)

1. A method to prepare actinomycete cells containing at least one nucleic acid molecule, wherein said molecule comprises at least one module that encodes a modular polyketide synthase (PKS) functional in catalyzing the synthesis of a polyketide, said module comprising at least one nucleotide sequence which encodes a PKS acyl transferase (AT) activity; at least one nucleotide sequence which encodes a PKS ketoacyl carrier protein synthase (KS) activity; and at least one nucleotide sequence which encodes a PKS acyl carrier protein (ACP) activity; said module operatively linked to a control sequence, whereby a functional modular PKS is produced in said cells, with the proviso that said module or said control sequence is heterologous to host cells, said method comprising introducing said nucleic acid molecule into actinomycete host cells that is natively produce polyketide.

2. The method of claim 1 wherein said introduced nucleic acid molecule and optionally additional nucleic acid molecules comprise a complete modular PKS gene cluster.

3. The method of claim 1 wherein said host cells have been modified so as completely to lack a PKS gene cluster normally present in the unmodified said host cell.

4. The method of claim 3 wherein said host cells are S. coelicolor.

5. The method of claim 1 wherein said module comprise:

at least one nucleotide sequence encoding PKS ketoreductase (KR) activity; or

at least one nucleotide sequence encoding PKS ketoreductase (KR) activity and

at least one nucleotide sequence encoding PKS dehydratase (DH) activity; or

at least one nucleotide sequence encoding PKS ketoreductase (KR) activity and

at least one nucleotide sequence encoding PKS dehydratase (DH) activity, and

at least one nucleotide sequence encoding PKS enoyl reductase (ER) activity; and

optionally,

at least one nucleotide sequence encoding PKS thioesterase (TE) activity.

6. The method of claim 5 wherein said module comprises:

at least one nucleotide sequence encoding PKS ketoreductase (KR) activity and

at least one nucleotide sequence encoding PKS dehydratase (DH) activity; and

at least one nucleotide sequence encoding PKS enoyl reductase (ER) activity.

Continuity (6)
Continuation 0926318400 · Mar 5, 1999
Division 0882889800 · Mar 31, 1997
Continuation 0823881100 · May 6, 1994
Continuation In Part 0816430100 · Dec 8, 1993
Continuation In Part 0812373200 · Sep 20, 1993
Related Publication 20020110874A1 · Aug 15, 2002