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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Streptomyces chromofuscus phospholipase D interaction with lipidic activators at the air–water interface
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Streptomyces chromofuscus phospholipase D interaction with lipidic activators at the air–water interface

机译:在空气-水界面处,链霉菌嗜铬磷脂酶D与脂质活化剂相互作用

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摘要

The phospholipase D from Streptomyces chromofuscus (PLDSc) is a soluble enzyme that interacts with membranes to catalyse phosphatidylcholine (PC) transformation. In this work, we focused on the interaction between PLDSc and two lipid activators: a neutral lipid, diacylglycerol (DAG), and an anionic one, phosphatidic acid (PA). DAG is a naturally occurring alcohol, so it is a potent nucleophile for the transphosphatidylation reaction catalysed by PLD. Concerning PA, it is a widely described activator of PLDSc-catalysed hydrolysis of PC. The monolayer technique allowed us to define PLDSc interaction with DAG and PA. In the case of DAG, the results suggest an insertion of PLDSc within the acyl chains of the lipid with an exclusion pressure of approximately 45 mN/m. PLDSc–DAG interaction seemed to occur preferentially with the lipid in the liquid-expanded (LE) phase. PLDSc interaction with PA was found to be more effective at high surface pressures. The overall results obtained with PA show a preferential interaction of the protein with condensed PA domains. No exclusion pressure could be found for PLDSc–PA interaction indicating only superficial interaction with the polar head of this lipid. Brewster angle microscopy (BAM) images were acquired in order to confirm these results and to visualise the patterns induced by PLDSc adsorption.
机译:染色体链霉菌(PLDSc)的磷脂酶D是一种可溶酶,可与膜相互作用以催化磷脂酰胆碱(PC)转化。在这项工作中,我们着重于PLDSc与两种脂质活化剂之间的相互作用:中性脂质二酰基甘油(DAG)和一种阴离子脂质磷脂酸(PA)。 DAG是天然存在的醇,因此对于PLD催化的转磷脂酰化反应而言,它是一种有效的亲核试剂。关于PA,它是PLDSc催化的PC水解的活化剂。单层技术使我们能够定义与DAG和PA的PLDSc相互作用。对于DAG,结果表明PLDSc在脂质的酰基链内插入,排阻压力约为45 mN / m。 PLDSc–DAG相互作用似乎优先与液体膨胀(LE)相中的脂质发生。发现PLDSc与PA的相互作用在高表面压力下更有效。用PA获得的总体结果显示了蛋白质与浓缩的PA结构域的优先相互作用。没有发现PLDSc-PA相互作用的排阻压力,表明与该脂质的极性头只有表面相互作用。获取布鲁斯特角显微镜(BAM)图像以确认这些结果并可视化PLDSc吸附诱导的模式。

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