Polyneuridine Aldehyde Esterase

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Sequence analysis led to the preliminary classification of '''PNAE''' as a new candidate of the large α/β hydrolase superfamily. This classification is based in particular on the catalytic triad Ser87, Asp216, and His244, which was previously verified by single mutations and homology modeling.
Sequence analysis led to the preliminary classification of '''PNAE''' as a new candidate of the large α/β hydrolase superfamily. This classification is based in particular on the catalytic triad Ser87, Asp216, and His244, which was previously verified by single mutations and homology modeling.
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The structural data now available for '''PNAE''' support the overall mechanism, which undoubtedly represents the key reaction for the biosynthesis of C9-monoterpenoid ''Rauvolfia'' alkaloids. The data will also allow a rational, structure-based redesign of '''PNAE''', similar what we have recently demonstrated for the Pictet-Spenglerase, strictosidine synthase, which is now applied for chemoenzymatic synthesis of novel alkaloid libraries.
The structural data now available for '''PNAE''' support the overall mechanism, which undoubtedly represents the key reaction for the biosynthesis of C9-monoterpenoid ''Rauvolfia'' alkaloids. The data will also allow a rational, structure-based redesign of '''PNAE''', similar what we have recently demonstrated for the Pictet-Spenglerase, strictosidine synthase, which is now applied for chemoenzymatic synthesis of novel alkaloid libraries.

Revision as of 10:06, 8 August 2016

Polyneuridine aldehyde esterase complex with vellosimine 3gzj

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3D structures of polyneuridine aldehyde esterase

2wfm – SePAE (mutant) – Serpentwood
2wfl – SePAE
3gzj – SePAE + 16-epi-vellosimine

References

  1. Mattern-Dogru E, Ma X, Hartmann J, Decker H, Stockigt J. Potential active-site residues in polyneuridine aldehyde esterase, a central enzyme of indole alkaloid biosynthesis, by modelling and site-directed mutagenesis. Eur J Biochem. 2002 Jun;269(12):2889-96. PMID:12071952
  2. Yang L, Hill M, Wang M, Panjikar S, Stockigt J. Structural basis and enzymatic mechanism of the biosynthesis of C9- from C10-monoterpenoid indole alkaloids. Angew Chem Int Ed Engl. 2009;48(28):5211-3. PMID:19496101 doi:10.1002/anie.200900150

Proteopedia Page Contributors and Editors (what is this?)

Alexander Berchansky, Michal Harel, Liuqing Yang, Joel L. Sussman

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