Winkler F K, D'Arcy A, Hunziker W
Central Research Units, F. Hoffmann-La Roche Ltd., Basel, Switzerland.
Nature. 1990 Feb 22;343(6260):771-4. doi: 10.1038/343771a0.
Pancreatic lipase (triacylglycerol acyl hydrolase) fulfills a key function in dietary fat absorption by hydrolysing triglycerides into diglycerides and subsequently into monoglycerides and free fatty acids. We have determined the three-dimensional structure of the human enzyme, a single-chain glycoprotein of 449 amino acids, by X-ray crystallography and established its primary structure by sequencing complementary DNA clones. Enzymatic activity is lost after chemical modification of Ser 152 in the porcine enzyme, indicating that this residue is essential in catalysis, but other data are more consistent with a function in interfacial recognition. Our structural results are evidence that Ser 152 is the nucleophilic residue essential for catalysis. It is located in the larger N-terminal domain at the C-terminal edge of a doubly wound parallel beta-sheet and is part of an Asp-His-Ser triad, which is chemically analogous to, but structurally different from, that in the serine proteases. This putative hydrolytic site is covered by a surface loop and is therefore inaccessible to solvent. Interfacial activation, a characteristic property of lipolytic enzymes acting on water-insoluble substrates at water-lipid interfaces, probably involves a reorientation of this flap, not only in pancreatic lipases but also in the homologous hepatic and lipoprotein lipases.
胰腺脂肪酶(三酰基甘油酰基水解酶)通过将甘油三酯水解为甘油二酯,随后进一步水解为甘油单酯和游离脂肪酸,在膳食脂肪吸收中发挥关键作用。我们通过X射线晶体学确定了人源该酶(一种由449个氨基酸组成的单链糖蛋白)的三维结构,并通过对互补DNA克隆进行测序确定了其一级结构。猪源酶中Ser 152经化学修饰后酶活性丧失,这表明该残基在催化过程中至关重要,但其他数据更支持其在界面识别中的功能。我们的结构研究结果证明Ser 152是催化必需的亲核残基。它位于较大的N端结构域中,处于双股平行β折叠的C端边缘,是天冬氨酸-组氨酸-丝氨酸三联体的一部分,该三联体在化学上与丝氨酸蛋白酶中的三联体类似,但结构不同。这个假定的水解位点被一个表面环覆盖,因此溶剂无法接触到它。界面激活是脂解酶在水-脂质界面作用于水不溶性底物时的一个特征性质,可能不仅涉及胰腺脂肪酶,还涉及同源的肝脂肪酶和脂蛋白脂肪酶中这个瓣的重新定向。