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巨大芽孢杆菌解偶联抗性突变体的膜生物能量学参数

Membrane bioenergetic parameters in uncoupler-resistant mutants of Bacillus megaterium.

作者信息

Decker S J, Lang D R

出版信息

J Biol Chem. 1978 Oct 10;253(19):6738-43.

PMID:29041
Abstract

Mutants of Bacillus megaterium displaying malate-driven ATP synthesis resistant to uncouplers of oxidative posphorylation are further characterized. Both the pH gradient and electrical potential generated across the membrane by malate respiration are equally sensitive to uncouplers in the wild type and uncoupler-resistant mutants. The mutants possess 0 to 10% of the wild type ATPase activity which is not activated by pretreatment with heat or trypsin. Despite this inability to measure ATPase activity, the mutants demonstrate acid-pulse-driven ATPase synthesis which is sensitive to uncouplers as well as malate-driven ATP synthesis which becomes uncoupler sensitive at pH 5.5. N,N' -Dicyclohexylcarbodiimide and valinomycin plus potassium inhibition of ATP synthesis is reversed by uncouplers in the mutants but not in the wild type. The data support the existence of a specific site on the ATPase complex for uncoupler binding which, if altered by mutation, affects uncoupler binding to the complex. The retention of malate-driven ATP synthesis in the absence of a significant pH gradient or electrical potential suggests that an alternative intermediate is involved in coupling oxidation to phosphorylation.

摘要

对巨大芽孢杆菌中表现出苹果酸驱动的ATP合成且对氧化磷酸化解偶联剂具有抗性的突变体进行了进一步表征。在野生型和抗解偶联剂突变体中,苹果酸呼吸在膜两侧产生的pH梯度和电势对解偶联剂同样敏感。这些突变体具有野生型ATP酶活性的0%至10%,且该活性不会因热预处理或胰蛋白酶处理而被激活。尽管无法测量ATP酶活性,但这些突变体表现出酸脉冲驱动的ATP合成,其对解偶联剂敏感,以及苹果酸驱动的ATP合成,在pH 5.5时该合成对解偶联剂敏感。在突变体中,N,N'-二环己基碳二亚胺和缬氨霉素加钾对ATP合成的抑制作用可被解偶联剂逆转,但在野生型中则不然。这些数据支持在ATP酶复合物上存在一个用于解偶联剂结合的特定位点,该位点如果因突变而改变,会影响解偶联剂与复合物的结合。在不存在显著pH梯度或电势的情况下苹果酸驱动的ATP合成得以保留,这表明一种替代中间体参与了氧化与磷酸化的偶联。

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