Abstract Lipidic liquid crystalline cubic phases for preparation of ATP-hydrolysing enzyme electrodes
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Lipidic liquid crystalline cubic phases for preparation of ATP-hydrolysing enzyme electrodes

机译:用于制备ATP水解酶电极的脂质液晶立方相

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AbstractThe lipidic liquid-crystalline cubic phase (LCP) is a membrane-mimetic material useful for the stabilization and structural analysis of membrane proteins. Here, we focused on the incorporation of the membrane ATP-hydrolysing sodium/potassium transporter Na+/K+-ATPase (NKA) into a monoolein-derived LCP. Small-angle X-ray scattering was employed for the determination of the LCP structure, which was of Pn3m symmetry for all the formulations studied. The fully characterized NKA-LCP material was immobilized onto a glassy carbon electrode, forming a highly stable enzyme electrode and a novel sensing platform. A typical NKA voltammetric signature was monitoredviathe anodic reaction of tyrosine and tryptophan residues. Thein situenzyme activity evaluation was based on the ability of NKA to transform ATP to ADP and free phosphate, the latter reacting with ammonium molybdate to form the ammonium phosphomolybdate complex under acidic conditions. The square-wave voltammetric detection of phosphomolybdate was performed and complemented with spectrophotometric measurement at 710nm. The anodic voltammetric response, corresponding to the catalytic ATP-hydrolysing function of NKA incorporated into the LCP, was monitored at around + 0.2Vvs.Ag/AgCl in the presence or absence of ouabain, a specific NKA inhibitor. NKA incorporated into the LCP retained its ATP-hydrolysing activity for 7 days, while the solubilized protein became practically inactive. The novelty of this work is the first incorporation of NKA into a lipidic cubic phase with consequent enzyme functionality and st
机译:<![cdata [ 抽象 脂质液晶立方相(LCP)是一种用于稳定和结构分析的膜模拟材料。在这里,我们专注于掺入膜ATP水解钠/钾转运蛋白RA + / K + / CE:Sup> -Atpase(NKA)进入MonoOlein衍生的LCP。采用小角X射线散射来测定LCP结构,其对所研究的所有配方的PN3M对称性。将完全表征的NKA-LCP材料固定在玻璃状碳电极上,形成高度稳定的酶电极和新颖的传感平台。监测典型的NKA伏安签名斜体>斜体>酪氨酸和色氨酸残留的阳极反应。 原位>斜体>酶活性评价基于NKA将ATP转化为ADP和游离磷酸盐的能力,后者与钼酸铵反应,在酸性条件下形成磷钼酸铵复合物。进行磷钼酸盐的方波伏安检测,并在710nm处替换分光光度测量。对应于掺入LCP中的NKA的催化ATP水解功能的阳极伏安响应,在约+ 0.2V:斜体>与斜体> Vs中进行监测。在存在或不存在奥巴风中的存在或不存在斜体> Ag / AgCl ,特定的NKA抑制剂。 NKA掺入LCP中保留其ATP水解活性7天,而溶解的蛋白质变得几乎不活性。这项工作的新颖性是首次将NKA掺入脂质立方相中,随后的酶功能和ST

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