Hydrolysis of Phospholipids in Presence of Phospholipase D:Thrmodynamic and Kinetic Studies of Hydrolysis in Water and Alcoholic Environments

Ikram S. Hussein, Thaer M. M. Al-Rammahi
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Abstract

Phospholipase D(PLD)catalyzes the hydrolysis of phospholipids to produce phosphatidic acid and hydroxyl compounds. Phosphatidylcholine (PC) is the most abundant phospholipid in animals and plants, often constituting nearly 50% of total complex lipids in animals and plants. However, Phosphatidylserine (PS) makes up around 5–10% of all phospholipids. This work includes the monitoring thermodynamic and kinetic of the enzymatic hydrolysis of PC and PS in both water and ethanol. All experiments were performedusing the Schlink line technique inN2present as an inert gas to prevent the oxidative stress. UV/Vis. spectrophotometer was used to observe the kinetic of all enzymatic reactions. In addition, the Origin 2019 software was used to analyze and find the kinetic parameters of the enzymatic hydrolysis reactions. The results show that the enzymatic hydrolys is reactions of PC in water and in ethanol occurredat the same conditions, enzymatic activity 1.752 U/mg, temperature 37 ᵒC, and pH =7. However, the enzymatic hydrolysis reactions of PS in water occurred at different conditions than in ethanol. The enzymatic substitution reaction of PSinethanol was thermodynamic favorable reaction due to the value of the ∆G =_164.868 J, but in water was thermodynamically unfavorable ΔG = 65.048 J. However, the enzymatic hydrolysis reaction of PC in water was thermodynamically unfavorable ∆G = 345.319 Jaswellas in ethanol ∆G = 74.433 J. The study shows that there is clear impact of present nitrogen bases of PC and the environment of the hydrolysis on the activity of the enzymatic catalyzing.
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磷脂酶 D 作用下的磷脂水解:水和酒精环境下水解的血流动力学和动力学研究
磷脂酶 D(PLD)催化磷脂水解,生成磷脂酸和羟基化合物。磷脂酰胆碱(PC)是动植物体内含量最高的磷脂,通常占动植物体内复合脂类总量的近 50%。然而,磷脂酰丝氨酸(PS)约占所有磷脂的 5-10%。这项工作包括监测 PC 和 PS 在水和乙醇中酶水解的热力学和动力学。所有实验均采用 Schlink 线技术,在 N2 作为惰性气体中进行,以防止氧化应激。紫外/可见分光光度计用于观察所有酶促反应的动力学。此外,还使用 Origin 2019 软件分析和查找酶水解反应的动力学参数。结果表明,在酶活 1.752 U/mg、温度 37 ᵒC、pH =7 的相同条件下,PC 在水中和乙醇中发生酶水解反应。但 PS 在水中的酶水解反应与在乙醇中的酶水解反应发生的条件不同。由于 ∆G =_164.868 J 的值,PS 在乙醇中的酶促取代反应是热力学上有利的反应,但在水中则是热力学上不利的 ∆G = 65.048 J。研究结果表明,PC 的氮基及水解环境对酶催化活性有明显的影响。
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