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胆碱缺乏大鼠肝脏中乙醇胺激酶活性以及二酰基甘油、磷脂酰胆碱和磷脂酰乙醇胺的组成

Ethanolamine kinase activity and compositions of diacylglycerols, phosphatidylcholines and phosphatidylethanolamines in livers of choline-deficient rats.

作者信息

Tinoco J, Endemann G, Medwadowski B, Miljanich P, Williams M A

出版信息

Lipids. 1979 Dec;14(12):968-74. doi: 10.1007/BF02533432.

Abstract

These experiments were performed to find the reasons for the increased concentrations of docosahexaenoyl phosphatidylethanolamines (PE) in livers of choline-deficient rats. We measured the activity of ethanolamine kinase, which catalyzes the first step in PE formation. We also measured the compositions of PE and phosphatidylcholines (PC) and concentrations and fatty acid compositions of diacylglycerols (DG), which are precursors of PE. Young male rats were fed for one week a low-methionine, choline-deficient diet, or the same diet supplemented with choline. Ethanolamine kinase activity was measured in liver cytosol (100,000 g supernatant). Fatty acids were measured in total liver diacylglycerols and in microsomal PE and PC. Ethanolamine kinase activities were equal in choline-deficient and choline-supplemented rats. Concentrations of DG were elevated 6-fold by choline deficiency. The percentage of docosahexaenoic acid (22:6n-3) in microsomal PE was nearly doubled by choline deficiency. Although the increased concentrations of PE in choline-deficient livers cannot be attributed to increased activity of ethanolamine kinase, the rate of PE formation probably was increased by increases in concentrations of its precursors, including DG. The disproportionate increase in 22:6n-3 PE probably was caused by a selective formation of PE from DG that contain 22:6n-3.

摘要

进行这些实验是为了找出胆碱缺乏的大鼠肝脏中二十二碳六烯酰磷脂酰乙醇胺(PE)浓度增加的原因。我们测量了乙醇胺激酶的活性,该酶催化PE形成的第一步。我们还测量了PE和磷脂酰胆碱(PC)的组成,以及二酰基甘油(DG)的浓度和脂肪酸组成,DG是PE的前体。给年轻雄性大鼠喂食低蛋氨酸、胆碱缺乏的饮食,或补充胆碱的相同饮食一周。在肝脏胞质溶胶(100,000g上清液)中测量乙醇胺激酶活性。在肝脏总二酰基甘油以及微粒体PE和PC中测量脂肪酸。胆碱缺乏和补充胆碱的大鼠中乙醇胺激酶活性相等。胆碱缺乏使DG浓度升高了6倍。胆碱缺乏使微粒体PE中二十二碳六烯酸(22:6n-3)的百分比几乎增加了一倍。虽然胆碱缺乏的肝脏中PE浓度增加不能归因于乙醇胺激酶活性增加,但PE形成速率可能因包括DG在内的其前体浓度增加而提高。22:6n-3 PE的不成比例增加可能是由含有22:6n-3的DG选择性形成PE所致。

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