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通过等温滴定量热法研究人血浆中的脂蛋白脂肪酶活性及相互作用。

Lipoprotein lipase activity and interactions studied in human plasma by isothermal titration calorimetry.

作者信息

Reimund Mart, Kovrov Oleg, Olivecrona Gunilla, Lookene Aivar

机构信息

Department of Chemistry, Tallinn University of Technology, Tallinn 12618, Estonia.

Department of Medical Biosciences, Umeå University, SE-901 87 Umeå, Sweden.

出版信息

J Lipid Res. 2017 Jan;58(1):279-288. doi: 10.1194/jlr.D071787. Epub 2016 Nov 14.

Abstract

LPL hydrolyzes triglycerides in plasma lipoproteins. Due to the complex regulation mechanism, it has been difficult to mimic the physiological conditions under which LPL acts in vitro. We demonstrate that isothermal titration calorimetry (ITC), using human plasma as substrate, overcomes several limitations of previously used techniques. The high sensitivity of ITC allows continuous recording of the heat released during hydrolysis. Both initial rates and kinetics for complete hydrolysis of plasma lipids can be studied. The heat rate was shown to correspond to the release of fatty acids and was linearly related to the amount of added enzyme, either purified LPL or postheparin plasma. Addition of apoC-III reduced the initial rate of hydrolysis by LPL, but the inhibition became less prominent with time when the lipoproteins were triglyceride poor. Addition of angiopoietin-like protein (ANGPTL)3 or ANGPTL4 caused reduction of the activity of LPL via a two-step mechanism. We conclude that ITC can be used for quantitative measurements of LPL activity and interactions under in vivo-like conditions, for comparisons of the properties of plasma samples from patients and control subjects as substrates for LPL, as well as for testing of drug candidates developed with the aim to affect the LPL system.

摘要

脂蛋白脂肪酶(LPL)可水解血浆脂蛋白中的甘油三酯。由于其调控机制复杂,在体外模拟LPL发挥作用的生理条件一直颇具难度。我们证明,以人血浆为底物的等温滴定量热法(ITC)克服了先前所用技术的若干局限性。ITC的高灵敏度使得能够连续记录水解过程中释放的热量。血浆脂质完全水解的初始速率和动力学均可得到研究。热速率显示与脂肪酸的释放相对应,并且与添加的酶量呈线性关系,添加的酶可以是纯化的LPL或肝素后血浆。载脂蛋白C-III(apoC-III)的添加降低了LPL的初始水解速率,但当脂蛋白中甘油三酯含量较低时,随着时间推移抑制作用变得不那么明显。血管生成素样蛋白(ANGPTL)3或ANGPTL4的添加通过两步机制导致LPL活性降低。我们得出结论,ITC可用于在类似体内的条件下对LPL活性和相互作用进行定量测量,用于比较患者和对照受试者的血浆样本作为LPL底物的性质,以及用于测试旨在影响LPL系统而开发的候选药物。

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