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Effects of beta-pinene on yeast membrane functions.

机译:β-pine烯对酵母膜功能的影响。

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摘要

The effects of beta-pinene on yeast cells were studied. This terpene inhibited respiration with glucose or ethanol as the substrate. The inhibition depended on the ratio of the terpene to the amount of yeast cells; for a fixed concentration of pinene, inhibition decreased as the amount of yeast cells increased. Pinene also inhibited the pumping of protons and K+ transport, but this inhibition was more marked with with ethanol than with glucose as the substrate, indicating the mitochondrial localization of the inhibition. The studies on isolated mitochondria showed a series of effects, starting with the disappearance of the respiratory control and deenergization of the organelles and followed by an inhibition of respiration at higher concentrations of the terpene. The effect on respiration could be localized to the cytochrome b region of the electron transport chain. No effect could be detected on the activity of ATPase. The effects can be ascribed to a localization of pinene on membranes which was also accompanied by a decrease in the fluorescence polarization of diphenyl hexatriene, probably meaning an increase in the fluidity of the membrane, localized preferentially to the mitochondria.
机译:研究了β-pine烯对酵母细胞的影响。该萜烯以葡萄糖或乙醇为底物抑制呼吸。抑制作用取决于萜烯与酵母细胞数量的比例。对于固定浓度的pin烯,抑制作用随酵母细胞数量的增加而降低。 ene烯也抑制质子的泵送和K +转运,但是乙醇抑制作用比葡萄糖为底物更明显,表明该抑制作用的线粒体定位。对分离的线粒体的研究显示出一系列作用,从呼吸控制的消失和细胞器的失能开始,然后在较高浓度的萜烯下抑制呼吸。对呼吸的影响可能局限于电子传输链的细胞色素b区域。没有检测到对ATP酶活性的影响。这种作用可以归因于pin烯在膜上的定位,同时还伴随着二苯基己三烯的荧光偏振降低,这可能意味着膜的流动性增加,优先定位于线粒体。

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