Literature DB >> 20534347

Insights into bacterial 6-methylsalicylic acid synthase and its engineering to orsellinic acid synthase for spirotetronate generation.

Wei Ding1, Chun Lei, Qingli He, Qinglin Zhang, Yurong Bi, Wen Liu.   

Abstract

The enzymes 6-methylsalicylic acid (6-MSA) synthases (6-MSASs) are involved in the building of an aryl moiety in many bioactive secondary metabolites produced by fungi and bacteria. Using the bacterial 6-MSAS ChlB1 in the biosynthesis of spirotetronate antibiotic chlorothricin (CHL) as a model, functional analysis of its dehydratase (DH) and ketoreductase (KR) domains by site-specific mutagenesis revealed that selective ketoreduction is not essential for polyketide chain extension. Promiscuity of the ketoacylsynthase domain in beta functionality recognition allows for engineering ChlB1 to an orsellinic acid (OSA) synthase (OSAS) by inactivating KR at the active site. The engineered ChlB1 is compatible with the enzymes for late-stage tailoring in CHL biosynthesis, featuring specific protein recognitions that facilitate variable aryl group incorporation. The resulting spirotetronates, which bear an OSA-derived aryl group, exhibited antibacterial activities comparable to those of the parent products. 2010 Elsevier Ltd. All rights reserved.

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Year:  2010        PMID: 20534347     DOI: 10.1016/j.chembiol.2010.04.009

Source DB:  PubMed          Journal:  Chem Biol        ISSN: 1074-5521


  13 in total

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7.  Insights into 6-Methylsalicylic Acid Bio-assembly by Using Chemical Probes.

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10.  Insights into 6-Methylsalicylic Acid Bio-assembly by Using Chemical Probes.

Authors:  James S Parascandolo; Judith Havemann; Helen K Potter; Fanglu Huang; Elena Riva; Jack Connolly; Ina Wilkening; Lijiang Song; Peter F Leadlay; Manuela Tosin
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