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Yeast protein-surfactant complexes uncouple microbial electron transfer and increase transmembrane leak of protons

机译:酵母蛋白质表面活性剂复合物解耦微生物电子传递并增加质子跨膜泄漏

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摘要

AIMS: To explore the combined effect of yeast proteins and surfactants on bacterial metabolism. METHODS AND RESULTS: Protein-rich cell-free supernatant from heat-shocked yeast Saccharomyces cerevisiae was combined with certain synthetic surfactants. These blends affected the metabolism of a Polyseed inoculum of aerobic bacteria, accelerating CO(2) production and consumption of nutrients from a sterile nutrient broth solution, without a concomitant accumulation of biomass. It is suggested that in the presence of the yeast protein-surfactant complexes, bacterial electron transport is uncoupled from biomass accumulation. The 'uncoupling hypothesis' is supported by experiments with model membranes, in which the same complexes induced proton leak similar to standard chemical uncouplers, such as dinitrophenol, indicating that uncoupling may occur at the stage of generation of the transmembrane pH gradient as the driving force for ATP production. CONCLUSIONS: Yeast protein-surfactant complexes behave as uncouplers of oxidative metabolism in bacteria and appear to do so by increasing proton permeability of membranes. SIGNIFICANCE AND IMPACT OF THE STUDY: Yeast proteins may be of interest as nontoxic, environmentally benign and economically sound agents accelerating oxidative bacterial metabolism while uncoupling it from biomass accumulation. There are actual and potential implications in waste water/soil decontamination, degreasing and other environmental technologies.
机译:目的:探讨酵母蛋白和表面活性剂对细菌代谢的综合作用。方法和结果:将热激酵母酿酒酵母中富含蛋白质的无细胞上清液与某些合成表面活性剂混合。这些混合物影响有氧细菌的多种子接种物的代谢,加速了CO(2)的产生和无菌营养肉汤溶液中营养的消耗,而没有生物质的伴随积累。建议在存在酵母蛋白质表面活性剂复合物的情况下,细菌电子的运输与生物质的积累无关。 “解偶联假说”得到模型膜实验的支持,其中相同的络合物诱发质子泄漏,类似于标准的化学解偶联剂,例如二硝基苯酚,表明解偶联可能发生在跨膜pH梯度作为驱动力的阶段。用于ATP生产。结论:酵母蛋白表面活性剂复合物在细菌中起氧化代谢解偶联剂的作用,并且似乎是通过增加膜的质子渗透性来实现的。这项研究的意义和影响:酵母蛋白质可能是无毒,对环境无害且在经济上无害的试剂,可加速氧化细菌的新陈代谢,同时又与生物量的积累脱钩,因此受到关注。对废水/土壤的去污,除油和其他环境技术有实际和潜在的影响。

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