Evaluation of new Cu(II) complexes as a novel class of inhibitors against plant carbonic anhydrase, glutathione reductase, and photosynthetic activity in photosystem II

Margarita V. Rodionova, Sergei K. Zharmukhamedov, Mehmet Sayım Karacan, Kubra Begum Venedik, Alexandr V. Shitov, Turgay Tunç, Serhat Mamaş, Vladimir D. Kreslavski, Nurcan Karacan, Vyacheslav V. Klimov, Suleyman I. Allakhverdiev

    研究成果査読

    9 被引用数 (Scopus)

    抄録

    Increasing inefficiency of production of important agricultural plants raises one of the biggest problems in the modern world. Herbicide application is still the best method of weed management. Traditional herbicides blocking only one of the plant metabolic pathways is ineffective due to the rapid growth of herbicide-resistant weeds. The synthesis of novel compounds effectively suppressing several metabolic processes, and therefore achieving the synergism effect would serve as the alternative approach to weed problem. For this reason, recently, we synthesized a series of nine novel Cu(II) complexes and four ligands, characterized them with different analyses techniques, and carried out their primary evaluation as inhibitors of photosynthetic electron transfer in spinach thylakoids (design, synthesis, and evaluation of a series of Cu(II) based metal–organic complexes as possible inhibitors of photosynthesis, J Photochem Photobiol B, submitted). Here, we evaluated in vitro inhibitory potency of these agents against: photochemistry and carbonic anhydrase activity of photosystem II (PSII); α-carbonic anhydrase from bovine erythrocytes; as well as glutathione reductase from chloroplast and baker’s yeast. Our results show that all Cu(II) complexes excellently inhibit glutathione reductase and PSII carbonic anhydrase activity. Some of them also decently inhibit PSII photosynthetic activity.

    本文言語English
    ページ(範囲)139-153
    ページ数15
    ジャーナルPhotosynthesis research
    133
    1-3
    DOI
    出版ステータスPublished - 9月 1 2017

    ASJC Scopus subject areas

    • 生化学
    • 植物科学
    • 細胞生物学

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