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富含DHA的磷脂可优化G蛋白偶联信号传导。

DHA-rich phospholipids optimize G-Protein-coupled signaling.

作者信息

Mitchell Drake C, Niu Shui-Lin, Litman Burton J

机构信息

National Institute on Alcohol Abuse and Alcoholism, Bethesda, Maryland 20892, USA.

出版信息

J Pediatr. 2003 Oct;143(4 Suppl):S80-6. doi: 10.1067/s0022-3476(03)00405-0.

Abstract

OBJECTIVE

To assess the effects of n-3 polyunsaturated phospholipid acyl chains on the initial steps in G-protein-coupled signaling.

STUDY DESIGN

Isolated components of the visual signal transduction system, rhodopsin, G protein (G(t)), and phosphodiesterase (PDE), were reconstituted in membranes containing various levels of n-3 polyunsaturated phospholipid acyl chains. In addition, rod outer segment disk membranes containing these components were purified from rats raised on n-3-deficient and n-3-adequate diets. The conformation change of rhodopsin, coupling of rhodopsin to G(t), and PDE activity were each measured separately.

RESULTS

The ability of rhodopsin to form the active metarhodopsin II conformation and bind G(t) were both compromised in membranes with reduced levels of n-3 polyunsaturated acyl chains. The activity of PDE, directly related to the integrated cellular response, was reduced in all membranes lacking or deficient in n-3 polyunsaturated acyl chains. PDE activity in membranes containing 22:5n-6 PC was 50% lower than in membranes containing either 22:6n-3 PC or 22:5n-3 PC.

CONCLUSIONS

The earliest events in G-protein-coupled signaling; receptor conformation change, receptor-G-protein binding, and PDE activity are reduced in membranes lacking n-3 polyunsaturated acyl chains. Efficient and rapid propagation of G-protein-coupled signaling requires polyunsaturated n-3 phospholipid acyl chains.

摘要

目的

评估n-3多不饱和磷脂酰链对G蛋白偶联信号传导初始步骤的影响。

研究设计

视觉信号转导系统的分离成分,视紫红质、G蛋白(G(t))和磷酸二酯酶(PDE),在含有不同水平n-3多不饱和磷脂酰链的膜中进行重组。此外,从喂食n-3缺乏和n-3充足饮食的大鼠中纯化含有这些成分的视杆外段盘膜。分别测量视紫红质的构象变化、视紫红质与G(t)的偶联以及PDE活性。

结果

在n-3多不饱和酰基链水平降低的膜中,视紫红质形成活性变视紫红质II构象并结合G(t)的能力均受到损害。与整体细胞反应直接相关的PDE活性在所有缺乏或n-3多不饱和酰基链含量不足的膜中均降低。含有22:5n-6 PC的膜中的PDE活性比含有22:6n-3 PC或22:5n-3 PC的膜低50%。

结论

在缺乏n-3多不饱和酰基链的膜中,G蛋白偶联信号传导的最早事件,即受体构象变化、受体-G蛋白结合和PDE活性均降低。G蛋白偶联信号的高效快速传播需要多不饱和n-3磷脂酰链。

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