Literature DB >> 17557809

Rational conversion of substrate and product specificity in a Salvia monoterpene synthase: structural insights into the evolution of terpene synthase function.

Sotirios C Kampranis1, Daphne Ioannidis, Alan Purvis, Walid Mahrez, Ederina Ninga, Nikolaos A Katerelos, Samir Anssour, Jim M Dunwell, Jörg Degenhardt, Antonios M Makris, Peter W Goodenough, Christopher B Johnson.   

Abstract

Terpene synthases are responsible for the biosynthesis of the complex chemical defense arsenal of plants and microorganisms. How do these enzymes, which all appear to share a common terpene synthase fold, specify the many different products made almost entirely from one of only three substrates? Elucidation of the structure of 1,8-cineole synthase from Salvia fruticosa (Sf-CinS1) combined with analysis of functional and phylogenetic relationships of enzymes within Salvia species identified active-site residues responsible for product specificity. Thus, Sf-CinS1 was successfully converted to a sabinene synthase with a minimum number of rationally predicted substitutions, while identification of the Asn side chain essential for water activation introduced 1,8-cineole and alpha-terpineol activity to Salvia pomifera sabinene synthase. A major contribution to product specificity in Sf-CinS1 appears to come from a local deformation within one of the helices forming the active site. This deformation is observed in all other mono- or sesquiterpene structures available, pointing to a conserved mechanism. Moreover, a single amino acid substitution enlarged the active-site cavity enough to accommodate the larger farnesyl pyrophosphate substrate and led to the efficient synthesis of sesquiterpenes, while alternate single substitutions of this critical amino acid yielded five additional terpene synthases.

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Year:  2007        PMID: 17557809      PMCID: PMC1955729          DOI: 10.1105/tpc.106.047779

Source DB:  PubMed          Journal:  Plant Cell        ISSN: 1040-4651            Impact factor:   11.277


  34 in total

1.  WHAT IF: a molecular modeling and drug design program.

Authors:  G Vriend
Journal:  J Mol Graph       Date:  1990-03

2.  A high-throughput structural biology/proteomics beamline at the SRS on a new multipole wiggler.

Authors:  Michele Cianci; Svetlana Antonyuk; Neil Bliss; Mike W Bailey; Stephen G Buffey; Kan C Cheung; Jim A Clarke; Gareth E Derbyshire; Mark J Ellis; Mark J Enderby; Alan F Grant; Martin P Holbourn; David Laundy; Colin Nave; Roy Ryder; Paul Stephenson; John R Helliwell; S Samar Hasnain
Journal:  J Synchrotron Radiat       Date:  2005-06-15       Impact factor: 2.616

3.  The maize gene terpene synthase 1 encodes a sesquiterpene synthase catalyzing the formation of (E)-beta-farnesene, (E)-nerolidol, and (E,E)-farnesol after herbivore damage.

Authors:  Christiane Schnee; Tobias G Köllner; Jonathan Gershenzon; Jörg Degenhardt
Journal:  Plant Physiol       Date:  2002-12       Impact factor: 8.340

4.  Plant terpenoid synthases: molecular biology and phylogenetic analysis.

Authors:  J Bohlmann; G Meyer-Gauen; R Croteau
Journal:  Proc Natl Acad Sci U S A       Date:  1998-04-14       Impact factor: 11.205

5.  Domain swapping of Citrus limon monoterpene synthases: impact on enzymatic activity and product specificity.

Authors:  Mazen K El Tamer; Joost Lücker; Dirk Bosch; Harrie A Verhoeven; Francel W A Verstappen; Wilfried Schwab; Arjen J van Tunen; Alphons G J Voragen; Ruud A de Maagd; Harro J Bouwmeester
Journal:  Arch Biochem Biophys       Date:  2003-03-15       Impact factor: 4.013

6.  Genomic organization of plant terpene synthases and molecular evolutionary implications.

Authors:  S C Trapp; R B Croteau
Journal:  Genetics       Date:  2001-06       Impact factor: 4.562

Review 7.  Terpene synthases and the regulation, diversity and biological roles of terpene metabolism.

Authors:  Dorothea Tholl
Journal:  Curr Opin Plant Biol       Date:  2006-04-04       Impact factor: 7.834

8.  Overproduction and analysis of eukaryotic multiprotein complexes in Escherichia coli using a dual-vector strategy.

Authors:  Jeff Finkelstein; Edwin Antony; Manju M Hingorani; Michael O'Donnell
Journal:  Anal Biochem       Date:  2003-08-01       Impact factor: 3.365

9.  Alternative termination chemistries utilized by monoterpene cyclases: chimeric analysis of bornyl diphosphate, 1,8-cineole, and sabinene synthases.

Authors:  Reuben J Peters; Rodney B Croteau
Journal:  Arch Biochem Biophys       Date:  2003-09-15       Impact factor: 4.013

10.  Biosynthesis of monoterpenes: partial purification, characterization, and mechanism of action of 1,8-cineole synthase.

Authors:  R Croteau; W R Alonso; A E Koepp; M A Johnson
Journal:  Arch Biochem Biophys       Date:  1994-02-15       Impact factor: 4.013

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  81 in total

1.  Synthesis of 'cineole cassette' monoterpenes in Nicotiana section Alatae: gene isolation, expression, functional characterization and phylogenetic analysis.

Authors:  Anke Fähnrich; Anne Brosemann; Laura Teske; Madeleine Neumann; Birgit Piechulla
Journal:  Plant Mol Biol       Date:  2012-06-06       Impact factor: 4.076

2.  The primary diterpene synthase products of Picea abies levopimaradiene/abietadiene synthase (PaLAS) are epimers of a thermally unstable diterpenol.

Authors:  Christopher I Keeling; Lina L Madilao; Philipp Zerbe; Harpreet K Dullat; Jörg Bohlmann
Journal:  J Biol Chem       Date:  2011-04-25       Impact factor: 5.157

3.  Terpene Specialized Metabolism in Arabidopsis thaliana.

Authors:  Dorothea Tholl; Sungbeom Lee
Journal:  Arabidopsis Book       Date:  2011-04-06

Review 4.  Protein engineering towards natural product synthesis and diversification.

Authors:  Angelica O Zabala; Ralph A Cacho; Yi Tang
Journal:  J Ind Microbiol Biotechnol       Date:  2011-10-18       Impact factor: 3.346

5.  Transforming yeast peroxisomes into microfactories for the efficient production of high-value isoprenoids.

Authors:  Simon Dusséaux; William Thomas Wajn; Yixuan Liu; Codruta Ignea; Sotirios C Kampranis
Journal:  Proc Natl Acad Sci U S A       Date:  2020-12-02       Impact factor: 11.205

6.  Cloning, functional characterization and genomic organization of 1,8-cineole synthases from Lavandula.

Authors:  Zerihun A Demissie; Monica A Cella; Lukman S Sarker; Travis J Thompson; Mark R Rheault; Soheil S Mahmoud
Journal:  Plant Mol Biol       Date:  2012-05-17       Impact factor: 4.076

7.  EST analysis and annotation of transcripts derived from a trichome-specific cDNA library from Salvia fruticosa.

Authors:  Fani M Chatzopoulou; Antonios M Makris; Anagnostis Argiriou; Jörg Degenhardt; Angelos K Kanellis
Journal:  Plant Cell Rep       Date:  2010-03-24       Impact factor: 4.570

Review 8.  Enzyme (re)design: lessons from natural evolution and computation.

Authors:  John A Gerlt; Patricia C Babbitt
Journal:  Curr Opin Chem Biol       Date:  2009-02-23       Impact factor: 8.822

9.  Divergent regulation of terpenoid metabolism in the trichomes of wild and cultivated tomato species.

Authors:  Katrin Besser; Andrea Harper; Nicholas Welsby; Ines Schauvinhold; Stephen Slocombe; Yi Li; Richard A Dixon; Pierre Broun
Journal:  Plant Physiol       Date:  2008-11-07       Impact factor: 8.340

Review 10.  Terpenoid synthase structures: a so far incomplete view of complex catalysis.

Authors:  Yang Gao; Richard B Honzatko; Reuben J Peters
Journal:  Nat Prod Rep       Date:  2012-08-21       Impact factor: 13.423

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