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若丹明和溴化乙锭对酵母线粒体F1-ATP酶、F0F1-ATP酶及亚线粒体颗粒的抑制作用

Inhibition of yeast mitochondrial F1-ATPase, F0F1-ATPase and submitochondrial particles by rhodamines and ethidium bromide.

作者信息

Wieker H J, Kuschmitz D, Hess B

出版信息

Biochim Biophys Acta. 1987 Jun 9;892(1):108-17. doi: 10.1016/0005-2728(87)90253-2.

Abstract

ATP hydrolysis by F1-ATPase is strongly inhibited by cationic rhodamines; neutral rhodamines are very poor inhibitors. Rhodamine 6G is a noncompetitive inhibitor of purified F0F1-ATPase and submitochondrial particles, however, an uncompetitive inhibitor of F1-ATPase (KI approximately equal to 2.4 microM for all three enzyme forms). Ethidium bromide is a noncompetitive inhibitor of F0F1-ATPase, submitochondrial particles and also F1-ATPase (KI approximately equal to 270 microM). Neither of the inhibitors affects the negative cooperativity (nH approximately equal to 0.7). The non-identical binding sites for rhodamine 6G and ethidium bromide are located on the F1-moiety and are topologically distinct from the catalytic site. Binding of the inhibitors prevents the conformational changes essential for energy transduction. It is concluded that the inhibitor binding sites are involved in proton translocation. In F1-ATPase, binding of MgATP at a catalytic site causes conformational changes, which allosterically induce the correct structure of the rhodamine 6G binding site. In F0F1-ATPase, this conformation of the F1-moiety exists a priori, due to allosteric interactions with F0-subunits. The binding site for ethidium bromide on F1-ATPase does not require substrate binding at the catalytic site and is not affected by F0F1-subunit interactions.

摘要

阳离子罗丹明可强烈抑制F1 - ATP酶的ATP水解;中性罗丹明的抑制作用则很弱。罗丹明6G是纯化的F0F1 - ATP酶和亚线粒体颗粒的非竞争性抑制剂,然而,它是F1 - ATP酶的反竞争性抑制剂(对于所有三种酶形式,KI约等于2.4 microM)。溴化乙锭是F0F1 - ATP酶、亚线粒体颗粒以及F1 - ATP酶的非竞争性抑制剂(KI约等于270 microM)。这两种抑制剂均不影响负协同性(nH约等于0.7)。罗丹明6G和溴化乙锭的结合位点不同,位于F1部分,在拓扑结构上与催化位点不同。抑制剂的结合阻止了能量转导所必需的构象变化。得出的结论是,抑制剂结合位点参与质子转运。在F1 - ATP酶中,催化位点处MgATP的结合会引起构象变化,这种变化会别构诱导罗丹明6G结合位点形成正确的结构。在F0F1 - ATP酶中,由于与F0亚基的别构相互作用,F1部分的这种构象是先验存在的。F1 - ATP酶上溴化乙锭的结合位点不需要催化位点处的底物结合,并且不受F0F1亚基相互作用的影响。

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