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A Novel High-Throughput Assay Reveals That the Temperature Induced Increases in Transphosphatidylation of Phospholipase D Are Dependent on the Alcohol Acceptor Concentration

机译:一种新的高通量测定表明,温度诱导的磷脂酶D转磷脂酰化增加取决于酒精受体浓度

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摘要

Phospholipase D reacts with alcohols or water, transphosphatidylating or hydrolysing lipids such as phosphatidylcholine, generating phosphatidylalcohols or phosphatidic acid, respectively. The enzyme has been employed in many applications making use of the transphosphatidylation reaction and the enzyme's tolerance for organic solvents in order to synthesize natural and artificial phospholipids. Yet, its catalytic properties with respect to the transphosphatidylation reaction are not well understood. Here, we introduce a novel high-throughput assay, making use of 96-well plates, that employs Fluorescamine for the detection of transphosphatidylated amino alcohols. This assay allowed to monitor the K-M and V-Max at different temperatures, revealing that the former will be elevated by the temperature, while the latter is increased by a combination of both temperature and alcohol acceptor concentration being elevated, suggesting that increase in temperature may open up a new binding site for the alcohol acceptor.
机译:磷脂酶D与醇或水反应,转磷脂酰化或水解脂质,如磷脂酰胆碱,分别生成磷脂酰醇或磷脂酸。该酶已用于许多应用,利用转磷脂酰化反应和酶对有机溶剂的耐受性来合成天然和人造磷脂。然而,其对转磷脂酰化反应的催化特性尚不清楚。在这里,我们介绍了一种新型的高通量检测方法,它使用96孔板,使用荧光碱检测转磷脂酰化氨基醇。该测定允许在不同温度下监测 K-M 和 V-Max,揭示前者会随着温度升高而升高,而后者会因温度和酒精受体浓度升高而增加,这表明温度升高可能为酒精受体开辟新的结合位点。

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