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Adsorption of gastric lipase onto multicomponent model lipid monolayers with phase separation

机译:胃脂肪酶在相分离的多组分模型脂质单分子层上的吸附

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摘要

The enzymatic lipolysis of complex natural lipoproteic assemblies such as milk fat globules is central in neonatal digestion. This process first requires the rapid adsorption of a lipolytic enzyme, gastric lipase, onto the membrane enveloping the triglyceride substrate before the onset of catalytic activity. The interactions governing lipase adsorption onto this complex lipid/water interface are not fully elucidated. This study was designed to unravel the interactions of recombinant dog gastric lipase (rDGL) with model monolayers presenting liquid-liquid phase coexistence and mimicking the outer leaflet of the milk fat globule membrane. Combining biophysical tools (ellipsometry, tensiometry and atomic force microscopy), it was evidenced that rDGL partitions toward liquid expanded phase and at phase boundaries. rDGL gets adsorbed at several levels of insertion suggesting molecular cooperation that may favor insertion and strongly impacts on the lipid phase lateral organization. The addition of phosphatidylserine, negatively charged, reinforced adsorption; hence besides hydrophobic interactions and as further investigated through surface potential modeling, rDGL adsorption is favored by electrostatic interactions. (C) 2016 Elsevier B.V. All rights reserved.
机译:复杂的天然脂蛋白组装体(如牛奶脂肪球)的酶促脂解作用在新生儿消化中至关重要。该过程首先需要在催化活性开始之前将脂解酶胃脂肪酶迅速吸附到包裹甘油三酸酯底物的膜上。尚未完全阐明控制脂肪酶吸附在这种复杂的脂质/水界面上的相互作用。本研究旨在揭示重组狗胃脂肪酶(rDGL)与模型单层的相互作用,模型单层呈现液-液相共存并模仿乳脂球膜的外小叶。结合生物物理工具(椭圆光度法,张力测定法和原子力显微镜),已证明rDGL在液体膨胀相和相界处分配。 rDGL在几种插入水平上均被吸附,表明分子协作可能有利于插入,并强烈影响脂质相的横向组织。带有负电荷的磷脂酰丝氨酸的加入增强了吸附;因此,除疏水作用外,如通过表面电势模型进一步研究,rDGL吸附受静电作用的促进。 (C)2016 Elsevier B.V.保留所有权利。

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