Martinez C, De Geus P, Lauwereys M, Matthyssens G, Cambillau C
Faculté de médecine Nord, France.
Nature. 1992 Apr 16;356(6370):615-8. doi: 10.1038/356615a0.
Lipases belong to a class of esterases whose activity on triglycerides is greatly enhanced at lipid-water interfaces. This phenomenon, called interfacial activation, has a structural explanation: a hydrophobic lid, which at rest covers the catalytic site, is displaced on substrate or inhibitor binding and probably interacts with the lipid matrix. Fusarium solani pisi cutinase belongs to a group of homologous enzymes of relative molecular mass 22-25K (ref. 7) capable of degrading cutin, the insoluble lipid-polyester matrix covering the surface of plants, and hydrolysing triglycerides. Cutinases differ from classical lipases in that they do not exhibit interfacial activation; they are active on soluble as well as on emulsified triglycerides. Cutinases therefore establish a bridge between esterases and lipases. We report here the three-dimensional structure of a recombinant cutinase from F. solani pisi, expressed in Escherichia coli. Cutinase is an alpha-beta protein; the active site is composed of the triad Ser 120, His 188 and Asp 175. Unlike other lipases, the catalytic serine is not buried under surface loops, but is accessible to solvent. This could explain why cutinase does not display interfacial activation.
脂肪酶属于酯酶的一类,其对甘油三酯的活性在脂质 - 水界面处会大大增强。这种现象称为界面激活,有其结构上的解释:一个疏水盖子,在静止时覆盖催化位点,在底物或抑制剂结合时会发生位移,并且可能与脂质基质相互作用。茄病镰刀菌角质酶属于一组相对分子质量为22 - 25K的同源酶(参考文献7),能够降解角质(覆盖植物表面的不溶性脂质 - 聚酯基质)并水解甘油三酯。角质酶与经典脂肪酶的不同之处在于它们不表现出界面激活;它们对可溶性甘油三酯和乳化甘油三酯都有活性。因此,角质酶在酯酶和脂肪酶之间架起了一座桥梁。我们在此报告了在大肠杆菌中表达的来自茄病镰刀菌的重组角质酶的三维结构。角质酶是一种α - β蛋白;活性位点由Ser 120、His 188和Asp 175三联体组成。与其他脂肪酶不同,催化丝氨酸并不埋藏在表面环之下,而是可被溶剂接触到。这可以解释为什么角质酶不表现出界面激活。