Colipase is a key element in lipase-catalyzed dietary lipids hydrolysis. Although devoid of enzymatic activity, colipase promotes pancreatic lipase activity in the physiological intestinal conditions by anchoring the enzyme on the surface of lipid droplets. Polarization modulation infrared reflection absorption spectroscopy combined with Brewster angle microscopy studies was performed on colipase alone and in various lipid environments to obtain a global view of both conformation and orientation and to assess lipid perturbations. We clearly show that colipase fully inserts into a dilaurin monolayer and promotes the formation of lipid/protein domains, whereas in a phospholipid environment its insertion is only partial, limited to the polar head group. In a mixed 70% phosphatidylcholine/30% dilaurin environment, colipase adsorbs to but does not penetrate deeply into the film. It triggers the formation of diglyceride domains under which it would form a rather uniform layer. We also clearly demonstrate that colipase adopts a preferred orientation when dilaurin is present at the interface. In contrast, at a neutral phospholipid interface, the infrared spectra suggest an isotropic orientation of colipase which could explain its incapacity to reverse the inhibitory effects of these lipids on the lipase activity.

译文

:脂肪酶是脂肪酶催化的饮食脂质水解的关键元素。尽管缺乏酶促活性,但是在生理肠道条件下,固溶酶通过将酶锚定在脂质小滴的表面上来促进胰腺脂肪酶的活性。偏振调制红外反射吸收光谱法与布鲁斯特角显微镜研究相结合,仅在脂肪酶上和在各种脂质环境中进行,以获得构象和方向的整体视图并评估脂质的扰动。我们清楚地表明,固溶酶完全插入到二月桂酸酯单层中,并促进脂质/蛋白质结构域的形成,而在磷脂环境中,其插入仅是部分的,仅限于极性头基。在混合的70%磷脂酰胆碱/ 30%二月桂酸酯环境中,脂肪酶吸附但不会深深渗透到薄膜中。它触发了甘油二酯结构域的形成,在甘油二酯结构域下将形成相当均匀的层。我们还清楚地表明,当界面上存在双月桂酸酯时,椰油酶会采用一种优选的取向。相反,在中性磷脂界面处,红外光谱表明椰脂酶的各向同性取向,这可以解释其不能逆转这些脂质对脂酶活性的抑制作用。

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