Mateos-Diaz E, Amara S, Roussel A, Longhi S, Cambillau C, Carrière F
CNRS, Aix Marseille Université, Enzymologie Interfaciale et de Physiologie de la Lipolyse, Marseille, France.
Aix-Marseille Université, CNRS, Architecture et Fonction des Macromolécules Biologiques, Marseille, France.
Methods Enzymol. 2017;583:279-307. doi: 10.1016/bs.mie.2016.09.040. Epub 2016 Nov 11.
Structural studies on lipases by X-ray crystallography have revealed conformational changes occurring in the presence of surfactants/inhibitors and the pivotal role played by a molecular "lid" of variable size and structure depending on the enzyme. Besides controlling the access to the enzyme active site, the lid is involved in lipase activation, formation of the interfacial recognition site (IRS), and substrate docking within the active site. The combined use of surfactants and inhibitors has been critical for a better understanding of lipase structure-function relationships. An overview of crystal structures of lipases in complex with surfactants and inhibitors reveals common structural features and shows how surfactants monomers interact with the lid in its open conformation. The location of surfactants, inhibitors, and hydrophobic residues exposed upon lid opening provides insights into the IRS of lipases. The mechanism by which surfactants promote the lid opening can be further investigated in solution by site-directed spin labeling of lipase coupled to electron paramagnetic resonance spectroscopy. These experimental approaches are illustrated here by results obtained with mammalian digestive lipases, fungal lipases, and cutinases.
通过X射线晶体学对脂肪酶进行的结构研究揭示了在表面活性剂/抑制剂存在下发生的构象变化,以及取决于酶的大小和结构可变的分子“盖子”所起的关键作用。除了控制对酶活性位点的访问外,盖子还参与脂肪酶的激活、界面识别位点(IRS)的形成以及活性位点内的底物对接。表面活性剂和抑制剂的联合使用对于更好地理解脂肪酶的结构-功能关系至关重要。脂肪酶与表面活性剂和抑制剂复合物的晶体结构概述揭示了共同的结构特征,并展示了表面活性剂单体如何与处于开放构象的盖子相互作用。表面活性剂、抑制剂的位置以及盖子打开时暴露的疏水残基为脂肪酶的IRS提供了见解。通过与电子顺磁共振光谱耦合的脂肪酶定点自旋标记,可以在溶液中进一步研究表面活性剂促进盖子打开的机制。这里通过用哺乳动物消化脂肪酶、真菌脂肪酶和角质酶获得的结果说明了这些实验方法。