Joho M, Inouhe M, Tohoyama H, Murayama T
Department of Biology, Faculty of Science, Ehime University, Matsuyama, Japan.
J Ind Microbiol. 1995 Feb;14(2):164-8. doi: 10.1007/BF01569899.
This review describes nickel toxicity and nickel resistance mechanisms in fungi. Nickel toxicity in fungi is influenced by environmental factors such as pH, temperature and the existence of organic matter and other ions. We describe resistance mechanisms in nickel-resistant mutants of yeasts and filamentous fungi which were obtained by exposure to a mutagen or by successive culture in media containing increasing concentrations of nickel ion. Nickel resistance may involve: (1) inactivation of nickel toxicity by the production of extracellular nickel-chelating substances such as glutathione; (2) reduced nickel accumulation, probably by modification of a magnesium transport system; (3) sequestration of nickel into a vacuole associated with free histidine and involving Ni-insensitivity of vacuolar membrane H(+)-ATPase.
本综述描述了真菌中的镍毒性及抗镍机制。真菌中的镍毒性受环境因素影响,如pH值、温度、有机物及其他离子的存在。我们描述了通过暴露于诱变剂或在含递增浓度镍离子的培养基中连续培养而获得的酵母和丝状真菌抗镍突变体的抗镍机制。抗镍可能涉及:(1)通过产生细胞外镍螯合物质(如谷胱甘肽)使镍毒性失活;(2)可能通过改变镁转运系统减少镍积累;(3)将镍隔离到与游离组氨酸相关的液泡中,并涉及液泡膜H(+) - ATP酶对镍不敏感。