Title of article :
MCAT is not required for in vitro polyketide synthesis in a minimal actinorhodin polyketide synthase from Streptomyces coelicolor Original Research Article
Author/Authors :
Anne-Lise Matharu، نويسنده , , Russell J. Cox، نويسنده , , John Crosby and Matthew P. Crump، نويسنده , , Kate J. Byrom، نويسنده , , Thomas J. Simpson، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 1998
Pages :
13
From page :
699
To page :
711
Abstract :
Background: It has been proposed that Streptomyces malonyl CoA:holo acyl carrier protein transacylases (MCATs) provide a link between fatty acid and polyketide biosynthesis. Two recent studies have provided evidence that the presence of MCAT is essential for polyketide synthesis to proceed in reconstituted minimal polyketide synthases (PKSs). In contrast to this, we previously showed that the holo acyl carrier proteins (ACPs) from type II PKSs are capable of catalytic self -malonylation in the presence of malonyl CoA, which suggests that MCAT might not be necessary for polyketide biosynthesis. Results: We reconstituted a homologous actinorhodin (act) type II minimal PKS in vitro, When act holo-ACP is present in limiting concentrations, MCAT is required by the synthase complex in order for polyketide biosynthesis to proceed. When holo-ACP is present in excess, however, efficient polyketide synthesis proceeds without MCAT, The rate of polyketide production increases with holo-ACP concentration, but at low ACP concentration or equimolar ACP:KS:CLF (KS, ketosynthase; CLF, chain length determining factor) concentrations this rate is significantly lower than expected, indicating that free holo-ACP is sequestered by the KS/CLF complex. Conclusions: The rate of polyketide biosynthesis is dictated by the ratio of holo-ACP to KS and CLF, as well as by the total protein concentration, There is no absolute requirement for MCAT in polyketide biosynthesis in vitro, although the role of MCAT during polyketide synthesis in vivo remains an open question. MCAT might be responsible for the rate enhancement of malonyl transfer at very low free holo-ACP concentrations or it could be required to catalyse the transfer of malonyl groups from malonyl CoA to sequestered holo-ACP.
Journal title :
Chemistry and Biology
Serial Year :
1998
Journal title :
Chemistry and Biology
Record number :
1158080
Link To Document :
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