Title of article
An Unusual Role for a Mobile Flavin in StaC-like Indolocarbazole Biosynthetic Enzymes Original Research Article
Author/Authors
Peter J. Goldman، نويسنده , , Katherine S. Ryan، نويسنده , , Michael J. Hamill، نويسنده , , Annaleise R. Howard-Jones، نويسنده , , Christopher T. Walsh، نويسنده , , Sean J. Elliott، نويسنده , , Catherine L. Drennan، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2012
Pages
11
From page
855
To page
865
Abstract
The indolocarbazole biosynthetic enzymes StaC, InkE, RebC, and AtmC mediate the degree of oxidation of chromopyrrolic acid on route to the natural products staurosporine, K252a, rebeccamycin, and AT2433-A1, respectively. Here, we show that StaC and InkE, which mediate a net 4-electron oxidation, bind FAD with a micromolar Kd, whereas RebC and AtmC, which mediate a net 8-electron oxidation, bind FAD with a nanomolar Kd while displaying the same FAD redox properties. We further create RebC-10x, a RebC protein with ten StaC-like amino acid substitutions outside of previously characterized FAD-binding motifs and the complementary StaC-10x. We find that these mutations mediate both FAD affinity and product specificity, with RebC-10x displaying higher StaC activity than StaC itself. X-ray structures of this StaC catalyst identify the substrate of StaC as 7-carboxy-K252c and suggest a unique mechanism for this FAD-dependent enzyme.
Journal title
Chemistry and Biology
Serial Year
2012
Journal title
Chemistry and Biology
Record number
1160272
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