Mattson F H, Volpenhein R A
J Lipid Res. 1966 Jul;7(4):536-43.
An attempt was made to establish the number and characteristics of the enzymes in pancreatic juice that hydrolyze nitrogen- and phosphorus-free esters of fatty acids. For this purpose model compounds were hydrolyzed by lyophilized rat pancreatic juice under conditions that accelerated or inhibited the reactions. Although it is not established with certainty, it is suggested that three enzymes are responsible for the hydrolysis of fatty acid esters. The first enzyme is glycerol-ester hydrolase (EC 3.1.1.3) or lipase. This enzyme hydrolyzes water-insoluble esters of primary alcohols. The reaction occurs at an oil/water interface and is inhibited by bile salts at pH 8. The enzyme is relatively stable at pH 9, but unstable at pH 4. It has a broad pH optimum between 7.5 and 9.5. The second enzyme hydrolyzes esters of secondary alcohols and of other alcohols as well. It has an absolute requirement for bile salts and has a pH optimum at about 8. The enzyme is unstable in pancreatic juice when maintained at pH 9, probably due to the action of trypsin. It may be identical with sterol-ester hydrolase (EC 3.1.1.13). The third enzyme hydrolyzes water-soluble esters. It too has an absolute requirement for bile salts, although a smaller amount is necessary for maximum activity. This enzyme also is unstable at pH 9, but can be differentiated from the preceding enzyme by its stability at pH 4 and its pH optimum of 9.0. Carboxylic-ester hydrolase (EC 3.1.1.1) is not found in pancreatic juice, although it is present in pancreatic tissue.
人们试图确定胰液中水解脂肪酸无氮和无磷酯的酶的数量及特性。为此,在加速或抑制反应的条件下,用冻干的大鼠胰液水解模型化合物。尽管尚未确定,但有人认为三种酶负责脂肪酸酯的水解。第一种酶是甘油酯水解酶(EC 3.1.1.3)或脂肪酶。这种酶水解伯醇的水不溶性酯。反应发生在油/水界面,在pH 8时受胆汁盐抑制。该酶在pH 9时相对稳定,但在pH 4时不稳定。其最适pH范围在7.5至9.5之间。第二种酶也水解仲醇和其他醇的酯。它绝对需要胆汁盐,最适pH约为8。当维持在pH 9时,该酶在胰液中不稳定,可能是由于胰蛋白酶的作用。它可能与固醇酯水解酶(EC 3.1.1.13)相同。第三种酶水解水溶性酯。它也绝对需要胆汁盐,尽管最大活性所需的量较少。这种酶在pH 9时也不稳定,但可通过其在pH 4时的稳定性和最适pH 9.0与前一种酶区分开来。胰液中未发现羧酸酯水解酶(EC 3.1.1.1),尽管它存在于胰腺组织中。