首页> 外文期刊>Journal of biochemical and molecular toxicology >Purification and characterization of rat pancreatic fatty acid ethyl ester synthase and its structural and functional relationship to pancreatic cholesterol esterase.
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Purification and characterization of rat pancreatic fatty acid ethyl ester synthase and its structural and functional relationship to pancreatic cholesterol esterase.

机译:大鼠胰脂肪酸乙酯合成酶的纯化,表征及其与胰胆固醇酯酶的结构和功能关系。

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Formation of fatty acid ethyl esters (FAEEs, catalyzed by FAEE synthase) has been implicated in the pathogenesis of chronic pancreatitis. In previous studies, we demonstrated that FAEE synthase, purified from rat liver microsomes, is identical to rat liver carboxylesterase (pI 6.1), and structurally and functionally different than that from pancreas. In this study, we purified and characterized rat pancreatic microsomal FAEE synthase, and determined its relationship with rat pancreatic cholesterol esterase (ChE). Since most of the serine esterases express p-nitrophenyl acetate (PNPA)-hydrolyzing activity as well as synthetic activity to form fatty acid esters or amides with a wide spectrum of alcohols and amines, respectively, we used PNPA-hydrolyzing activity to monitor the purification of FAEE synthase during various chromatographic purification steps. Synthesizing activity towards FAEEs, fatty acid methyl esters, and fatty acid anilides was measured only in the pooled fractions. At each step of purification (ammonium sulfate saturation, Q Sepharose XL, and heparin-agarose column chromatographies, and high performance liquid chromatography (anion exchange and gel filtration)) synthetic as well as hydrolytic activities copurified. Using ethanol, methanol, or aniline as substrates, the ester or anilide synthesizing activity of the purified protein was found to be 8709, 13000, and 2201 nmol/h/mg protein, respectively. The purified protein displayed a single band with an estimated molecular mass of approximately 68 kD upon SDS-PAGE under reduced denaturing conditions, cross-reacted with antisera against rat pancreatic ChE and showed 100% N-terminal sequence homology of the first 15 amino acids to that of rat pancreatic ChE. These results suggest that the purified protein has broad substrate specificity towards the conjugation of endogenous long chain fatty acids with substrates having hydroxyl and amino groups and is identical to ChE.
机译:脂肪酸乙酯(FAEEs,由FAEE合酶催化)的形成与慢性胰腺炎的发病机理有关。在先前的研究中,我们证明了从大鼠肝微粒体中纯化的FAEE合酶与大鼠肝羧酸酯酶(pI 6.1)相同,并且在结构和功能上与胰腺不同。在这项研究中,我们纯化和表征大鼠胰腺微粒体FAEE合酶,并确定其与大鼠胰腺胆固醇酯酶(ChE)的关系。由于大多数丝氨酸酯酶均表现出对硝基苯乙酸酯(PNPA)的水解活性以及合成活性,以分别形成具有多种醇和胺的脂肪酸酯或酰胺,因此我们使用PNPA水解活性来监测纯化各种色谱纯化步骤中FAEE合酶的分析仅在合并的馏分中测量了对FAEE,脂肪酸甲酯和脂肪酸酐的合成活性。在纯化的每个步骤(硫酸铵饱和,Q Sepharose XL和肝素-琼脂糖柱色谱,以及高效液相色谱(阴离子交换和凝胶过滤))中,合成的以及水解活性均被同时纯化。使用乙醇,甲醇或苯胺作为底物,发现纯化蛋白的酯或苯胺合成活性分别为8709、13000和2201 nmol / h / mg。在降低的变性条件下,经SDS-PAGE纯化的蛋白质显示出一条估计分子量约为68 kD的单条带,与抗大鼠胰腺ChE的抗血清发生交叉反应,并显示前15个氨基酸的100%N端序列同源性大鼠胰腺癌。这些结果表明,纯化的蛋白质对内源性长链脂肪酸与具有羟基和氨基的底物的缀合具有广泛的底物特异性,并且与ChE相同。

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