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蒽-9-羧酸和尼氟灭酸等阴离子通道抑制剂通过降低细胞呼吸和能量代谢物来抑制布氏毛霉的生长。

Growth inhibition of fungus Phycomyces blakesleeanus by anion channel inhibitors anthracene-9-carboxylic and niflumic acid attained through decrease in cellular respiration and energy metabolites.

作者信息

Stanić Marina, Križak Strahinja, Jovanović Mirna, Pajić Tanja, Ćirić Ana, Žižić Milan, Zakrzewska Joanna, Antić Tijana Cvetić, Todorović Nataša, Živić Miroslav

机构信息

Institute for Multidisciplinary Research, University of Belgrade, Kneza Višeslava 1, 11030 Belgrade, Serbia.

Institute for Biological Research 'Siniša Stanković', University of Belgrade, Bulevar despota Stefana 142, 11060 Belgrade, Serbia.

出版信息

Microbiology (Reading). 2017 Mar;163(3):364-372. doi: 10.1099/mic.0.000429. Epub 2017 Mar 29.

Abstract

Increasing resistance of fungal strains to known fungicides has prompted identification of new candidates for fungicides among substances previously used for other purposes. We have tested the effects of known anion channel inhibitors anthracene-9-carboxylic acid (A9C) and niflumic acid (NFA) on growth, energy metabolism and anionic current of mycelium of fungus Phycomyces blakesleeanus. Both inhibitors significantly decreased growth and respiration of mycelium, but complete inhibition was only achieved by 100 and 500 µM NFA for growth and respiration, respectively. A9C had no effect on respiration of human NCI-H460 cell line and very little effect on cucumber root sprout clippings, which nominates this inhibitor for further investigation as a potential new fungicide. Effects of A9C and NFA on respiration of isolated mitochondria of P. blakesleeanus were significantly smaller, which indicates that their inhibitory effect on respiration of mycelium is indirect. NMR spectroscopy showed that both A9C and NFA decrease the levels of ATP and polyphosphates in the mycelium of P. blakesleeanus, but only A9C caused intracellular acidification. Outwardly rectifying, fast inactivating instantaneous anionic current (ORIC) was also reduced to 33±5 and 21±3 % of its pre-treatment size by A9C and NFA, respectively, but only in the absence of ATP. It can be assumed from our results that the regulation of ORIC is tightly linked to cellular energy metabolism in P. blakesleeanus, and the decrease in ATP and polyphosphate levels could be a direct cause of growth inhibition.

摘要

真菌菌株对已知杀真菌剂的抗性不断增加,促使人们在先前用于其他目的的物质中寻找新的杀真菌剂候选物。我们测试了已知的阴离子通道抑制剂蒽-9-羧酸(A9C)和氟尼酸(NFA)对真菌布氏根霉菌丝体生长、能量代谢和阴离子电流的影响。两种抑制剂均显著降低了菌丝体的生长和呼吸作用,但分别只有100和500µM的NFA才能完全抑制生长和呼吸作用。A9C对人NCI-H460细胞系的呼吸作用没有影响,对黄瓜根芽切段的影响也很小,这表明该抑制剂作为一种潜在的新型杀真菌剂值得进一步研究。A9C和NFA对布氏根霉分离线粒体呼吸作用的影响明显较小,这表明它们对菌丝体呼吸作用的抑制作用是间接的。核磁共振光谱显示,A9C和NFA均降低了布氏根霉菌丝体中ATP和多聚磷酸盐的水平,但只有A9C导致细胞内酸化。外向整流、快速失活的瞬时阴离子电流(ORIC)也分别被A9C和NFA降低到预处理时大小的33±5%和21±3%,但仅在无ATP的情况下。从我们的结果可以推测,布氏根霉中ORIC的调节与细胞能量代谢紧密相关,ATP和多聚磷酸盐水平的降低可能是生长抑制的直接原因。

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