Rugani N, Carrière F, Thim L, Borgstrom B, Sarda L
Laboratoire de Biochimie, Faculté des Sciences St. Charles, Marseille, France.
Biochim Biophys Acta. 1995 Mar 15;1247(2):185-94. doi: 10.1016/0167-4838(94)00226-7.
Porcine colipase, the protein cofactor of pancreatic lipase, was isolated from pancreas freshly collected on animals and from a side fraction from the production of insulin (Novo Nordisk A/S). Samples of purified colipase were analyzed for homogeneity by polyacrylamide gel electrophoresis, reverse-phase high-performance liquid chromatography (RPLC), quantitative N-terminal sequence determination and mass spectrometry. The activating properties of colipase preparations were assayed against tributyrin, triolein or the commercial Intralipid emulsion, in presence of bile salt. Two fractions of colipase with the same specific activity were purified from fresh pancreas. The major fraction (85%) contained one single protein corresponding to fragment 1-93 of the 95-residue form of colipase (procolipase) previously characterized in porcine pancreatic juice. The other fraction (15%) corresponded to fragment 1-91 of procolipase. Also, two fractions of colipase were purified from the side fraction supplied by Novo. These fractions consisted of the 95-residue proform of colipase and of fragment 1-93, respectively, both specifically cleaved at the Ile79-Thr80 peptide bond with partial removal of isoleucine at position 79 and serine at position 78. Procolipase split at the 79-80 bond retained full activity on tributyrin and triolein and on the Intralipid emulsion but the kinetics of hydrolysis of triacylglycerol substrates showed much longer lag periods than those observed with native procolipase. Also, all forms of procolipase split at the 79-80 bond showed one peak in RPLC but their retention time was markedly decreased as compared to that of native procolipase which indicated a weaker hydrophobic binding capacity. The value of the retention time was of the same order of magnitude as that of inactive reduced procolipase. Treatment of native procolipase by pancreatic endopeptidases showed that elastase is likely responsible for specific cleavage at the 79-80 bond of procolipase purified from the Novo extract. Limited proteolysis by trypsin of the proforms of colipase split at the 79-80 bond reduced the lag period. Results presented in this communication provide the first direct evidence showing that the finger-shaped peptide segment between half-cystine residues at positions 69 and 87 is involved in colipase-lipid interaction as previously hypothesized from the three-dimensional structure of the protein.
猪胰辅脂酶是胰脂肪酶的蛋白质辅因子,从刚采集的动物胰腺以及胰岛素生产(诺和诺德公司)的一个副产物中分离得到。通过聚丙烯酰胺凝胶电泳、反相高效液相色谱(RPLC)、N端序列定量测定和质谱分析对纯化的胰辅脂酶样品的均一性进行分析。在胆盐存在的情况下,针对三丁酸甘油酯、三油酸甘油酯或市售英脱利匹特乳剂测定胰辅脂酶制剂的激活特性。从新鲜胰腺中纯化出两种具有相同比活性的胰辅脂酶组分。主要组分(85%)包含一种单一蛋白质,对应于先前在猪胰液中鉴定的95个氨基酸形式的胰辅脂酶(前体胰辅脂酶)的1 - 93片段。另一个组分(15%)对应于前体胰辅脂酶的1 - 91片段。此外,从诺和诺德公司提供的副产物中纯化出两种胰辅脂酶组分。这些组分分别由95个氨基酸的胰辅脂酶前体形式和1 - 93片段组成,两者均在Ile79 - Thr80肽键处特异性裂解,79位的异亮氨酸和78位的丝氨酸部分去除。在79 - 80键处裂解的前体胰辅脂酶对三丁酸甘油酯、三油酸甘油酯和英脱利匹特乳剂仍保留全部活性,但三酰甘油底物的水解动力学显示其延迟期比天然前体胰辅脂酶观察到的长得多。同样,在79 - 80键处裂解的所有形式的前体胰辅脂酶在RPLC中均显示一个峰,但与天然前体胰辅脂酶相比,其保留时间明显缩短,这表明其疏水结合能力较弱。保留时间的值与无活性的还原型前体胰辅脂酶处于同一数量级。用胰腺内肽酶处理天然前体胰辅脂酶表明,弹性蛋白酶可能是从诺和诺德公司提取物中纯化的前体胰辅脂酶在79 - 80键处特异性裂解的原因。胰蛋白酶对在79 - 80键处裂解后的胰辅脂酶前体形式进行有限的蛋白水解可缩短延迟期。本论文中呈现的结果提供了首个直接证据,表明如先前根据该蛋白质的三维结构所推测的,69位和87位半胱氨酸残基之间的指状肽段参与了胰辅脂酶 - 脂质相互作用。