首页> 美国卫生研究院文献>Journal of Bacteriology >Catalytic Properties of Staphylococcus aureus and Bacillus Members of the Secondary Cation/Proton Antiporter-3 (Mrp) Family Are Revealed by an Optimized Assay in an Escherichia coli Host
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Catalytic Properties of Staphylococcus aureus and Bacillus Members of the Secondary Cation/Proton Antiporter-3 (Mrp) Family Are Revealed by an Optimized Assay in an Escherichia coli Host

机译:金黄色葡萄球菌和二级阳离子/质子反转运蛋白3(Mrp)家族的芽孢杆菌成员的催化特性通过大肠杆菌宿主中的优化分析得以揭示。

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摘要

Monovalent cation proton antiporter-3 (Mrp) family antiporters are widely distributed and physiologically important in prokaryotes. Unlike other antiporters, they require six or seven hydrophobic gene products for full activity. Standard fluorescence-based assays of Mrp antiport in membrane vesicles from Escherichia coli transformants have not yielded strong enough signals for characterization of antiport kinetics. Here, an optimized assay protocol for vesicles of antiporter-deficient E. coli EP432 transformants produced higher levels of secondary Na+(Li+)/H+ antiport than previously reported. Assays were conducted on Mrps from alkaliphilic Bacillus pseudofirmus OF4 and Bacillus subtilis and the homologous antiporter of Staphylococcus aureus (Mnh), all of which exhibited Na+(Li+)/H+ antiport. A second paralogue of S. aureus (Mnh2) did not. K+, Ca2+, and Mg2+ did not support significant antiport by any of the test antiporters. All three Na+(Li+)/H+ Mrp antiporters had alkaline pH optima and apparent Km values for Na+ that are among the lowest reported for bacterial Na+/H+ antiporters. Using a fluorescent probe of the transmembrane electrical potential (ΔΨ), Mrp Na+/H+ antiport was shown to be ΔΨ consuming, from which it is inferred to be electrogenic. These assays also showed that membranes from E. coli EP432 expressing Mrp antiporters generated higher ΔΨ levels than control membranes, as did membranes from E. coli EP432 expressing plasmid-borne NhaA, the well-characterized electrogenic E. coli antiporter. Assays of respiratory chain components in membranes from Mrp and control E. coli transformants led to a hypothesis explaining how activity of secondary, ΔΨ-consuming antiporters can elicit increased capacity for ΔΨ generation in a bacterial host.
机译:单价阳离子质子反转运蛋白3(Mrp)家族反转运蛋白在原核生物中分布广泛并且在生理上很重要。与其他反转运蛋白不同,它们需要六或七个疏水基因产物才能发挥全部活性。基于标准的基于荧光的大肠埃希氏菌转化体膜囊泡中Mrp反向转运的检测方法尚未产生足够强的信号来表征反向转运动力学。在这里,针对反转运蛋白缺陷的大肠杆菌EP432转化子囊泡的优化测定方案产生了更高水平的次级Na + (Li + )/ H + antiport比以前报道的要好。对嗜碱芽孢杆菌OF4和枯草芽孢杆菌以及金黄色葡萄球菌(Mnh)的同源反向转运蛋白的Mrps进行检测,所有这些都表现出Na + (Li + )/ H + 反端口。没有金黄色葡萄球菌(Mnh2)的第二个旁系同源物。 K + ,Ca 2 + 和Mg 2 + 不受任何测试反转运蛋白的支持。所有三个Na + (Li + )/ H + Mrp反转运蛋白均具有碱性pH最佳值和Na + + / H + 反向转运蛋白中报告的含量最低。使用跨膜电势(ΔΨ)的荧光探针,Mrp Na + / H + 反端口显示出ΔΨ消耗,据此推断它是电动的。这些测定法还表明,表达Mrp反转运蛋白的大肠杆菌EP432的膜比对照膜产生更高的ΔI水平,表达表达质粒的NhaA,即特征明确的电致大肠杆菌反转运蛋白的大肠杆菌EP432的膜也产生了更高的ΔI水平。对来自Mrp和对照大肠杆菌转化体的膜中呼吸链成分的测定导致了一个假说,该假说解释了次级耗Δδ的反向转运蛋白的活性如何在细菌宿主中引发增加的Δφ生成能力。

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