用BN-PAGE分析哺乳动物F0F1ATP合成酶的低聚物:洗涤剂的作用。

The Italian journal of biochemistry Pub Date : 2007-12-01
Elena Bisetto, Valentina Giorgio, Francesca Di Pancrazio, Irene Mavelli, Giovanna Lippe
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引用次数: 0

摘要

目前人们普遍认为,F0F1ATPsynthase除了以单体形式存在外,还以同二聚体和更高的同低聚体形式存在于膜中,这可能在决定线粒体形态中起关键作用。一步温和洗涤萃取后蓝色天然电泳(BN-PAGE)是研究天然膜蛋白组合的一种非常有趣的工具,可以与第二/第三维SDS-PAGE,免疫印迹,凝胶内酶活性染色和质谱分析相关联。通过结合这些技术,我们从牛心脏线粒体中分离出单体和高寡聚形式的atp合成酶。然而,一个关键点是洗涤剂的选择,这强烈影响BN-PAGE的蛋白质模式。通过Triton X-100,我们发现,尽管亚基组成相同,但单体的比活性远低于二聚体,并且两种形式的酪氨酸磷酸化模式不同,这表明单体和二聚体在膜中的功能不同。此外,酶的自结合似乎独立于抑制剂蛋白IF1与ATPsynthase的结合。十二烷基麦芽糖苷从单个活检样本中提取酶是最佳的,这使我们能够证明IF1在体内调节心脏酶活性中起核心作用。只有低浓度的洋地黄苷维持了大量的atp合成酶低聚物,这些低聚物似乎完整地保留了它们的天然催化性质。
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Characterization of oligomeric forms from mammalian F0F1ATP synthase by BN-PAGE: the role of detergents.

It is now widely accepted that F0F1ATPsynthase is present in membrane, beside as monomers, in homo-dimeric and higher homo-oligomeric forms, which probably play critical roles in determining mitochondrial morphology. One-step mild detergent extraction followed by blue native electrophoresis (BN-PAGE) is a very interesting tool for studying the native membrane protein assemblies which can be associated with second/third-dimensional SDS-PAGE, immunoblotting, in-gel enzyme activity staining and mass spectrometry analyses. By combining these techniques, we resolved monomers and higher oligomeric forms of ATPsynthase from bovine heart mitochondria. However, a critical point is the choice of the detergents, which strongly influence the protein pattern of BN-PAGE. By using Triton X-100 we obtained that, in spite of the same subunit composition, monomers have a much lower specific activity than dimers and the two forms have a different pattern of tyrosine phosphorylation, suggesting that monomers and dimers are functionally distinct in membrane. In addition, enzyme self-association appeared to occur independently from the binding to ATPsynthase of the inhibitor protein IF1. Dodecylmaltoside was optimal to extract the enzyme from single biopsy samples, allowing us to demonstrate that IF1 plays a central role in regulating the enzyme activity in heart in vivo. Only low concentration of digitonin maintained significant amounts of ATPsynthase oligomers, which seemed to retain intact their native catalytic properties.

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