Literature DB >> 10680169

Purification, stabilization and characterization of tomato fatty acid hydroperoxide lyase.

C N Suurmeijer1, M Pérez-Gilabert, D J van Unen, H T van der Hijden, G A Veldink, J F Vliegenthart.   

Abstract

Fatty acid hydroperoxide lyase (HPO-lyase) was purified 300-fold from tomatoes. The enzymatic activity appeared to be very unstable, but addition of Triton X100 and beta-mercaptoethanol to the buffer yielded an active enzyme that could be stored for several months at -80 degrees C. The enzyme was inhibited by desferoxamine mesylate (desferal), 2-methyl-1,2-di-3-pyridyl-1-propanone (metyrapone), nordihydroguaiaretic acid (NDGA), n-propyl gallate and butylated hydroxyanisole, suggesting the involvement of free radicals in the reaction mechanism and the existence of a prosthetic group in the active center. However, no heme group could be demonstrated with the methods commonly used to identify heme groups in proteins. Only 13-hydroperoxides from linoleic acid (13-HPOD) and alpha-linolenic acid (alpha-13-HPOT) were cleaved by the tomato enzyme, with a clear preference for the latter substrate. The pH-optimum was 6.5, and for concentrations lower than 300 microM a typical Michaelis-Menten curve was found with a K(m) of 77 microM. At higher alpha-13-HPOT concentrations inhibition of the enzyme was observed, which could (at least in part) be attributed to 2E-hexenal. A curve of the substrate conversion as a function of the enzyme concentration revealed that 1 nkat of enzyme activity converts 0.7 mumol alpha-13-HPOT before inactivation. Headspace analysis showed that tomato HPO-lyase formed hexanal from 13-HPOD and 3Z-hexenal from alpha-13-HPOT. A trace of the latter compound was isomerized to 2E-hexenal. In addition to the aldehydes, 12-oxo-9Z-dodecenoic acid was found by GC/MS analysis. To a small extent, isomerization to 12-oxo-10E-dodecenoic acid occurred.

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Year:  2000        PMID: 10680169     DOI: 10.1016/s0031-9422(99)00504-x

Source DB:  PubMed          Journal:  Phytochemistry        ISSN: 0031-9422            Impact factor:   4.072


  1 in total

1.  Recombinant Enzymatic Redox Systems for Preparation of Aroma Compounds by Biotransformation.

Authors:  Viktor Varga; Vladimír Štefuca; Lenka Mihálová; Zdenko Levarski; Eva Struhárňanská; Jaroslav Blaško; Robert Kubinec; Pavel Farkaš; Vladimír Sitkey; Ján Turňa; Michal Rosenberg; Stanislav Stuchlík
Journal:  Front Microbiol       Date:  2021-06-24       Impact factor: 5.640

  1 in total

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