High Versatility of IPP and DMAPP Methyltransferases Enables Synthesis of C6, C7 and C8 Terpenoid Building Blocks

被引:11
作者
Drummond, Laura [1 ,2 ]
Haque, Parab J. [1 ]
Gu, Binbin [3 ]
Jung, Julia S. [1 ]
Schewe, Hendrik [1 ]
Dickschat, Jeroen S. [3 ]
Buchhaupt, Markus [1 ]
机构
[1] DECHEMA Res Inst, Microbial Biotechnol, Theodor Heuss Allee 25, D-60486 Frankfurt, Germany
[2] Hsch Geisenheim Univ, Dept Microbiol & Biochem, Von Lade Str 1, D-65366 Geisenheim, Germany
[3] Univ Bonn, Kekule Inst Organ Chem & Biochem, Gerhard Domagk Str 1, D-53121 Bonn, Germany
关键词
DMAPP; IPP; non-canonical terpenes; terpenoids; transferases; LUTZOMYIA-LONGIPALPIS DIPTERA; 2; JUVENILE-HORMONES; SEX-PHEROMONE; PROPOSED STRUCTURE; BIOSYNTHESIS; IDENTIFICATION; MOTH; HOMOSESQUITERPENE; PSYCHODIDAE; MECHANISM;
D O I
10.1002/cbic.202200091
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The natural substance class of terpenoids covers an extremely wide range of different structures, although their building block repertoire is limited to the C-5 compounds DMAPP and IPP. This study aims at the characterization of methyltransferases (MTases) that modify these terpene precursors and the demonstration of their suitability for biotechnological purposes. All seven enzymes tested accepted IPP as substrate and altogether five C-6 compounds and six C-7 compounds were formed within the reactions. A high selectivity for the deprotonation site as well as high stereoselectivity could be observed for most of the biocatalysts. Only the enzyme from Micromonospora humi also accepted DMAPP as substrate, converting it into (2R)-2-methyl-IPP in vitro. In vivo studies demonstrated the production of a C-8 compound and a hydride shift step within the MTase-catalyzed reaction. Our study presents IPP / DMAPP MTases with very different catalytic properties, which provide biosynthetic access to many novel terpene-derived structures.
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页数:9
相关论文
共 30 条
  • [1] Akil, 2014, THESIS IZMIR I TECHN
  • [2] [Anonymous], 2007, ANGEW CHEM, V119, P8436
  • [3] Structure analysis of geranyl pyrophosphate methyltransferase and the proposed reaction mechanism of SAM-dependent C-methylation
    Ariyawutthiphan, Orapin
    Ose, Toyoyuki
    Minami, Atsushi
    Sinde, Sandip
    Tsuda, Muneya
    Gao, Yong-Gui
    Yao, Min
    Oikawa, Hideaki
    Tanaka, Isao
    [J]. ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 2012, 68 : 1558 - 1569
  • [4] A Methyltransferase Initiates Terpene Cyclization in Teleocidin B Biosynthesis
    Awakawa, Takayoshi
    Zhang, Lihan
    Wakimoto, Toshiyuki
    Hoshino, Shotaro
    Mori, Takahiro
    Ito, Takuya
    Ishikawa, Jun
    Tanner, Martin E.
    Abe, Ikuro
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2014, 136 (28) : 9910 - 9913
  • [5] BIOSYNTHESIS OF 3-HYDROXY-3-METHYLGLUTARYL-COA, 3-HYDROXY-3-ETHYLGLUTARYL-COA, MEVALONATE AND HOMOMEVALONATE BY INSECT CORPUS ALLATUM AND MAMMALIAN HEPATIC TISSUES
    BAKER, FC
    SCHOOLEY, DA
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA, 1981, 664 (02) : 356 - 372
  • [6] Buckingham J, DICT NATURAL PRODUCT
  • [7] Extension of the Terpene Chemical Space: the Very First Biosynthetic Steps
    Couillaud, Julie
    Duquesne, Katia
    Iacazio, Gilles
    [J]. CHEMBIOCHEM, 2022, 23 (09)
  • [8] DAHM KH, 1970, LIFE SCI 2-BIOCH GEN, V9, P1397
  • [9] Biosynthesis of the Off-Flavor 2-Methylisoborneol by the Myxobacterium Nannocystis exedens
    Dickschat, Jeroen S.
    Nawrath, Thorben
    Thiel, Verena
    Kunze, Brigitte
    Mueller, Rolf
    Schulz, Stefan
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2007, 46 (43) : 8287 - 8290
  • [10] Expanding the Isoprenoid Building Block Repertoire with an IPP Methyltransferase from Streptomyces monomycini
    Drummond, Laura
    Kschowak, Max J.
    Breitenbach, Juergen
    Wolff, Hendrik
    Shi, Yi-Ming
    Schrader, Jens
    Bode, Helge B.
    Sandmann, Gerhard
    Buchhaupt, Markus
    [J]. ACS SYNTHETIC BIOLOGY, 2019, 8 (06): : 1303 - 1313