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膜环境对肝微粒体膜肉碱酰基转移酶活性及丙二酰辅酶A抑制作用的影响

Effect of membrane environment on the activity and inhibitability by malonyl-CoA of the carnitine acyltransferase of hepatic microsomal membranes.

作者信息

Broadway N M, Saggerson E D

机构信息

Department of Biochemistry and Molecular Biology, University College London, U.K.

出版信息

Biochem J. 1997 Mar 1;322 ( Pt 2)(Pt 2):435-40. doi: 10.1042/bj3220435.

Abstract

We have investigated the extent to which membrane environment affects the catalytic properties of the malonyl-CoA-sensitive carnitine acyltransferase of liver microsomal membranes. Arrhenius-type plots of activity were linear in the absence and presence of malonyl-CoA (2.5 microM). Sensitivity to malonyl-CoA increased with decreasing assay temperature. Partly purified enzyme displayed an increased K0.5 (substrate concentration supporting half the maximal reaction rate) for myristoyl-CoA and a reduced sensitivity to malonyl-CoA compared with the enzyme in situ in membranes. Reconstitution with liposomes of a range of compositions restored the K0.5 for myristoyl-CoA to values similar to that seen in native membranes. The lipid requirements for restoration of sensitivity to malonyl-CoA were more stringent. When animals were starved for 24 h the specific activity of carnitine acyltransferase in microsomal membrane residues was increased 3.3-fold, whereas sensitivity to malonyl-CoA was decreased to 1/2.8. When enzymes partly purified from fed and starved animals were reconstituted into crude soybean phosphatidylcholine liposomes there was no difference in sensitivity to malonyl-CoA. When partly purified enzyme from fed rats was reconstituted into liposomes prepared from microsomal membrane lipids from fed animals it was 2.2-fold more sensitive to malonyl-CoA than when reconstituted with liposomes prepared from microsomal membrane lipids from starved animals. This suggests that the physiological changes in sensitivity to malonyl-CoA are mediated via changes in membrane lipid composition rather than via modification of the enzyme protein itself. The increased specific actvity of acyltransferase observed on starvation could not be attributed to changes in membrane lipid composition.

摘要

我们研究了膜环境对肝微粒体膜中丙二酰辅酶A敏感的肉碱酰基转移酶催化特性的影响程度。在不存在和存在丙二酰辅酶A(2.5微摩尔)的情况下,活性的阿伦尼乌斯型曲线均为线性。对丙二酰辅酶A的敏感性随测定温度降低而增加。与膜中的原位酶相比,部分纯化的酶对肉豆蔻酰辅酶A的K0.5(支持最大反应速率一半的底物浓度)增加,对丙二酰辅酶A的敏感性降低。用一系列组成的脂质体重建后,肉豆蔻酰辅酶A的K0.5恢复到与天然膜中相似的值。恢复对丙二酰辅酶A敏感性的脂质要求更为严格。当动物饥饿24小时时,微粒体膜残余物中肉碱酰基转移酶的比活性增加3.3倍,而对丙二酰辅酶A的敏感性降至1/2.8。当将从喂食和饥饿动物中部分纯化的酶重建到粗制大豆磷脂酰胆碱脂质体中时,对丙二酰辅酶A的敏感性没有差异。当将喂食大鼠的部分纯化酶重建到由喂食动物的微粒体膜脂质制备的脂质体中时,其对丙二酰辅酶A的敏感性比用饥饿动物的微粒体膜脂质制备的脂质体重建时高2.2倍。这表明对丙二酰辅酶A敏感性的生理变化是通过膜脂质组成的变化介导的,而不是通过酶蛋白本身的修饰。饥饿时观察到的酰基转移酶比活性增加不能归因于膜脂质组成的变化。

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Regulation of the long-chain carnitine acyltransferases.长链肉碱酰基转移酶的调节
FASEB J. 1993 Aug;7(11):1039-44. doi: 10.1096/fasebj.7.11.8370473.
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Inhibition of liver microsomal carnitine acyltransferases by sulphonylurea drugs.
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