Sterol Extraction from Isolated Plant Plasma Membrane Vesicles Affects H+-ATPase Activity and H+-Transport

被引:3
|
作者
Lapshin, Nikita K. [1 ]
Piotrovskii, Michail S. [1 ]
Trofimova, Marina S. [1 ]
机构
[1] Russian Acad Sci IPP RAS, KA Timiryazev Inst Plant Physiol, 35 Bot Skaya St, Moscow 127276, Russia
关键词
Pisum sativum L; plasma membrane vesicles; sterols; M beta CD; P-type H+-ATPas; H+-transport; DETERGENT-RESISTANT MEMBRANES; LIPID-PROTEIN INTERACTIONS; PROTON PUMP; FUSICOCCIN BINDING; INSIDE-OUT; MICRODOMAINS; ACTIVATION; MODULATION; CYCLODEXTRINS; ARABIDOPSIS;
D O I
10.3390/biom11121891
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Plasma membrane H+-ATPase is known to be detected in detergent-resistant sterol-enriched fractions, also called "raft " domains. Studies on H+-ATPase reconstituted in artificial or native membrane vesicles have shown both sterol-mediated stimulations and inhibitions of its activity. Here, using sealed isolated plasma membrane vesicles, we investigated the effects of sterol depletion in the presence of methyl-beta-cyclodextrin (M beta CD) on H+-ATPase activity. The rate of ATP-dependent increment mu H+ generation and the kinetic parameters of ATP hydrolysis were evaluated. We show that the relative sterols content in membrane vesicles decreased gradually after treatment with M beta CD and reached approximately 40% of their initial level in 30 mM probe solution. However, changes in the hydrolytic and H+-transport activities of the enzyme were nonlinear. The extraction of up to 20% of the initial sterols was accompanied by strong stimulation of ATP-dependent H+-transport in comparison with the hydrolytic activity of enzymes. Further sterol depletion led to a significant inhibition of active proton transport with an increase in passive H+-leakage. The solubilization of control and sterol-depleted vesicles in the presence of dodecyl maltoside negated the differences in the kinetics parameters of ATP hydrolysis, and all samples demonstrated maximal hydrolytic activities. The mechanisms behind the sensitivity of ATP-dependent H+-transport to sterols in the lipid environment of plasma membrane H+-ATPase are discussed.
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页数:17
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