A Simple Procedure for Selective Hydroxylation of L-Proline and L-Pipecolic Acid with Recombinantly Expressed Proline Hydroxylases

被引:62
|
作者
Klein, Christian [1 ]
Huettel, Wolfgang [1 ]
机构
[1] Univ Freiburg, Inst Pharmaceut Sci, Dept Pharmaceut & Med Chem, D-79104 Freiburg, Germany
关键词
asymmetric catalysis; enzyme catalysis; hydroxyprolines; alpha-ketoglutarate-dependent iron(II) oxygenases; regioselectivity; stereoselectivity; STEREOSPECIFIC HYDROXYLATION; AMINO-ACIDS; 3-HYDROXYLASE; STREPTOMYCES; TRANS-4-HYDROXY-L-PROLINE; HYDROXYPROLINES; 4-HYDROXYLASE; PURIFICATION; CLONING;
D O I
10.1002/adsc.201000863
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Due to their diverse regio- and stereoselectivities, proline hydroxylases provide a straightforward access to hydroxprolines and other hydroxylated cylic amino acids, valuable chiral building blocks for chemical synthesis, which are often not available at reasonable expense by classical chemical synthesis. As yet, the application of proline hydroxylases is limited to a sophisticated industrial process for the production of two hydroxyproline isomers. This is mainly due to difficulties in their heterologues expression, their limited in vitro stability and complex product purification procedures. Here we describe a facile method for the production of cis-3-, cis-4- and trans-4-proline hydroxylase, and their application for the regio- and stereoselective hydroxylation of L-proline and its six-membered ring homologue L-pipecolic acid. Since in vitro catalysis with these enzymes is not very efficient and conversions are restricted to the milligram scale, an in vivo procedure was established, which allowed a quantitative conversion of 6 mM L-proline in shake flask cultures. After facile product purification via ion exchange chromatography, hydroxyprolines were isolated in yields of 35-61% (175-305 mg per flask). L-Pipecolic acid was converted with the isolated enzymes to prove the selectivities of the reactions. In transformations with optimized iron(II) concentration, conversions of 17-68% to hydroxylated products were achieved. The regio-and stereochemistry of the products was determined by NMR techniques. To demonstrate the applicability of the preparative in vivo approach for non-physiological substrates, L-pipecolic acid was converted with an E. coli strain producing trans-4-proline hydroxylase to trans-5-hydroxy-L-pipecolic acid in 61% yield. Thus, a synthetically valuable group of biocatalysts was made readily accessible for application in the laboratory without a need for special equipment or considerable development effort.
引用
收藏
页码:1375 / 1383
页数:9
相关论文
共 50 条
  • [1] Enzymatic hydroxylation of L-pipecolic acid by L-proline cis-4-hydroxylases and isomers separation
    Fan Lu
    Jiao Chen
    Hai Ye
    Hongli Wu
    Feng Sha
    Fujun Huang
    Fei Cao
    Ping Wei
    Biotechnology Letters, 2020, 42 : 2607 - 2617
  • [2] ENZYMATIC SYNTHESIS OF L-PIPECOLIC ACID AND L-PROLINE
    MEISTER, A
    RADHAKRISHNAN, AN
    BUCKLEY, SD
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1957, 229 (02) : 789 - 800
  • [3] Supramolecular fluorescence sensing of l-proline and l-pipecolic acid
    Sierra, Andres Felipe
    Aragay, Gemma
    Penuelas-Haro, Guillem
    Ballester, Pablo
    ORGANIC CHEMISTRY FRONTIERS, 2021, 8 (11): : 2402 - 2412
  • [4] Pipecolic Acid Hydroxylases: A Monophyletic Clade among cis-Selective Bacterial Proline Hydroxylases that Discriminates L-Proline
    Mattay, Johanna
    Huettel, Wolfgang
    CHEMBIOCHEM, 2017, 18 (15) : 1523 - 1528
  • [5] In Vitro Fertilisation of Mouse Oocytes in L-Proline and L-Pipecolic Acid Improves Subsequent Development
    Treleaven, Tamara
    Hardy, Madeleine L. M.
    Guttman-Jones, Michelle
    Morris, Michael B.
    Day, Margot L.
    CELLS, 2021, 10 (06)
  • [6] Chemoenzymatic Synthesis of Phosphonic Acid Analogues of L-Lysine, L-Proline, L-Ornithine, and L-Pipecolic Acid of 99% ee - Assignment of Absolute Configuration to (-)-Proline
    Wuggenig, Frank
    Schweifer, Anna
    Mereiter, Kurt
    Hammerschmidt, Friedrich
    EUROPEAN JOURNAL OF ORGANIC CHEMISTRY, 2011, 2011 (10) : 1870 - 1879
  • [7] Enzymatic hydroxylation of L-pipecolic acid by L-prolinecis-4-hydroxylases and isomers separation
    Lu, Fan
    Chen, Jiao
    Ye, Hai
    Wu, Hongli
    Sha, Feng
    Huang, Fujun
    Cao, Fei
    Wei, Ping
    BIOTECHNOLOGY LETTERS, 2020, 42 (12) : 2607 - 2617
  • [8] Electrostatic interaction and regioselectivity enhancement in proline cis-4-hydroxylase for L-pipecolic acid hydroxylation
    Huang, Fujun
    Wang, Junyu
    Zhang, Lufei
    Yin, Qimo
    Shi, Yunlin
    Ye, Hai
    Wu, Bin
    Wu, Hongli
    Cao, Fei
    Wei, Ping
    MOLECULAR CATALYSIS, 2024, 553
  • [9] Microbial screening in hydroxylation of L-proline
    Bontoux, M. -C.
    Gelo-Pujic, M.
    TETRAHEDRON LETTERS, 2006, 47 (51) : 9073 - 9076
  • [10] An efficient procedure for the production of trans-4-hydroxy-L-proline using recombinantly expressed proline hydroxylase
    Chen, J. J.
    Gu, D. D.
    Li, T. Y.
    Ju, J. S.
    Xue, Zh. W.
    Li, C. H.
    Yan, J.
    Zhang, J. X.
    Wang, L. A.
    SCIENTIA IRANICA, 2015, 22 (06) : 2350 - 2357