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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Membrane partitioning of various delta-opioid receptor forms before and after agonist activations: the effect of cholesterol.
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Membrane partitioning of various delta-opioid receptor forms before and after agonist activations: the effect of cholesterol.

机译:激动剂激活前后各种δ-阿片受体形式的膜分配:胆固醇的作用。

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摘要

Lipid rafts depicted as densely packed and thicker membrane microdomains, based on the dynamic clustering of cholesterol and sphingolipids, may help as platforms involved in a wide variety of cellular processes. The reasons why proteins segregate into rafts are yet to be clarified. The human delta opioid receptor (hDOR) reconstituted in a model system has been characterised after ligand binding by an elongation of its transmembrane part, inducing rearrangement of its lipid microenvironment [Alves, Salamon, Hruby, and Tollin (2005) Biochemistry 44, 9168-9178]. We used hDOR to understand better the correlation between its function and its membrane microdomain localisation. A fusion protein of hDOR with the Green Fluorescent Protein (DOR*) allows precise receptor membrane quantification. Here we report that (i) a fraction of the total receptor pool requires cholesterol for binding activity, (ii) G-proteins stabilize a high affinity state conformation which does not seem modulated by cholesterol. In relation to its distribution, and (iii) a fraction of DOR* is constitutively associated with detergent-resistant membranes (DRM) characterised by an enrichment in lipids and proteins raft markers. (iv) An increase in the quantity of DOR* was observed upon agonist addition. (v) This DRM relocation is prevented by uncoupling the receptor-G-protein interaction.
机译:基于胆固醇和鞘脂的动态聚集,被描绘为密集堆积和较厚的膜微区的脂质筏可以作为参与多种细胞过程的平台而发挥作用。蛋白质分离成木排的原因尚不清楚。在配体结合后,通过跨膜部分的延长,诱导了其脂质微环境的重排,表征了在模型系统中重建的人类δ阿片受体(hDOR)[Alves,Salamon,Hruby,and Tollin(2005)Biochemistry 44,9168- 9178]。我们使用hDOR来更好地了解其功能与其膜微区定位之间的相关性。 hDOR与绿色荧光蛋白(DOR *)的融合蛋白可实现精确的受体膜定量。在这里,我们报告(i)总受体库的一小部分需要胆固醇才能具有结合活性,(ii)G蛋白稳定了似乎没有胆固醇调节的高亲和力状态构象。关于其分布,(iii)DOR *的一部分与耐去污剂膜(DRM)组成性结合,其特征在于富含脂质和蛋白质筏标记。 (iv)加入激动剂后观察到DOR *的量增加。 (v)通过解耦受体-G-蛋白相互作用来防止DRM重定位。

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