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首页> 外文期刊>Biochemistry >Sav1866 from staphylococcus aureus and P-glycoprotein: Similarities and differences in ATPase activity assessed with detergents as allocrites
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Sav1866 from staphylococcus aureus and P-glycoprotein: Similarities and differences in ATPase activity assessed with detergents as allocrites

机译:来自金黄色葡萄球菌和P-糖蛋白的Sav1866:用去垢剂作为去垢剂评估ATPase活性的异同

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摘要

The ATP-binding cassette exporters Sav1866 from Staphylococcus aureus and P-glycoprotein are known to share a certain sequence similarity and disposition for cationic allocrites. Conversely, the two ATPases react very differently to neutral detergents that have previously been shown to be inhibitory allocrites for P-glycoprotein. To gain insight into the functional differences of the two proteins, we compared their basal and detergent-stimulated ATPase activity. P-Glycoprotein was investigated in NIH-MDR1-G185 plasma membrane vesicles and Sav1866 in lipid vesicles exhibiting a membrane packing density and a surface potential similar to those of the plasma membrane vesicles. Under basal conditions, Sav1866 revealed a lower catalytic efficiency and concomitantly a more pronounced sodium chloride and pH dependence than P-glycoprotein. As expected, the cationic allocrites (alkyltrimethylammonium chlorides) induced similar bell-shaped activity curves as a function of concentration for both exporters, suggesting stimulation upon binding of the first and inhibition upon binding of the second allocrite molecule. However, the neutral allocrites (n-alkyl-β-d-maltosides and n-ethylene glycol monododecyl ethers) reduced P-glycoprotein's ATPase activity at concentrations well below their critical micelle concentration (CMC) but strongly enhanced Sav1866's ATPase activity even at concentrations above their CMC. The lack of ATPase inhibition at high concentrations of neutral of detergents could be explained by their comparatively low binding affinity for the transmembrane domains of Sav1866, which seems to prevent binding of a second inhibitory molecule. The high ATPase activity in the presence of hydrophobic, long chain detergents moreover revealed that Sav1866, despite its lower basal catalytic efficiency, is a more efficient floppase for lipidlike amphiphiles than P-glycoprotein.
机译:已知来自金黄色葡萄球菌的ATP结合盒输出蛋白Sav1866和P-糖蛋白对于阳离子金属亚目共有一定的序列相似性和配置。相反,这两种ATP酶与中性去污剂的反应非常不同,中性去污剂先前已证明是P-糖蛋白的抑制性分配物。为了深入了解这两种蛋白质的功能差异,我们比较了它们的基础和去污剂刺激的ATPase活性。在NIH-MDR1-G185质膜囊泡中研究了P-糖蛋白,在脂质囊泡中的Sav1866中研究了P-糖蛋白,该膜的膜堆积密度和表面电位类似于质膜囊泡。在碱性条件下,Sav1866的催化效率比P-糖蛋白低,并且氯化钠和pH依赖性更高。如所预期的,对于两个出口者而言,阳离子金属钙钛矿(烷基三甲基氯化铵)诱导出相似的钟形活性曲线作为浓度的函数,表明在第一金属钙钛矿分子结合时受到刺激,而在第二金属钙钛矿分子结合时受到抑制。但是,中性金属磷灰石(正烷基-β-d-麦芽糖苷和正乙二醇单十二烷基醚)在远低于其临界胶束浓度(CMC)的浓度下会降低P-糖蛋白的ATPase活性,但即使在高于15mg的浓度下也会大大增强Sav1866的ATPase活性。他们的CMC。在高浓度的中性洗涤剂中,ATPase缺乏抑制作用,可以用它们对Sav1866跨膜结构域的结合亲和力较低来解释,这似乎阻止了第二个抑制分子的结合。此外,在疏水性长链去污剂存在下的高ATPase活性表明,尽管Sav1866具有较低的基础催化效率,但它对类脂质两亲物而言比P-糖蛋白更有效。

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