Centre for Addiction and Mental Health, Department of Pharmacology, University of Toronto, Toronto, Ontario, Canada.
Biochem Biophys Res Commun. 2011 Feb 18;405(3):445-9. doi: 10.1016/j.bbrc.2011.01.050. Epub 2011 Jan 15.
We previously determined that D1 receptors can endocytose through caveolae, a subset of lipid rafts, in addition to internalization via a clathrin-dependent pathway. In this report, we investigated the potential role that palmitoylation might have on directing D1 receptor internalization through either a clathrin or caveolar-dependent route. Through whole cell binding analysis and sucrose gradient fractionation studies, we demonstrated that although palmitoylation of the D1 receptor was not required for agonist-independent localization to caveolae, agonist induced internalization kinetics of a de-palmitoylated D1 receptor were accelerated ∼8-fold in comparison to wild-type D1 receptor and were very similar to that observed for clathrin-dependent D1 receptor internalization. Additionally, inhibition of the clathrin mediated pathway led to significant attenuation in the extent of agonist induced internalization of the de-palmitoylated D1 receptor, suggesting the de-palmitoylated D1 receptor was directed to a clathrin-dependent internalization pathway. Taken together, these data suggest that palmitoylation may be involved in directing agonist-dependent D1 receptor internalization through selective endocytic routes.
我们之前已经确定 D1 受体除了通过网格蛋白依赖性途径内化之外,还可以通过 caveolae(脂筏的一个子集)内吞。在本报告中,我们研究了棕榈酰化在指导 D1 受体通过网格蛋白或 caveolae 依赖性途径内化方面的潜在作用。通过全细胞结合分析和蔗糖梯度分级分离研究,我们证明了尽管 D1 受体的棕榈酰化对于激动剂非依赖性定位到 caveolae 不是必需的,但与野生型 D1 受体相比,去棕榈酰化 D1 受体的激动剂诱导内化动力学被加速了约 8 倍,并且与观察到的网格蛋白依赖性 D1 受体内化非常相似。此外,抑制网格蛋白介导的途径会导致激动剂诱导的去棕榈酰化 D1 受体内化程度显著减弱,表明去棕榈酰化 D1 受体被引导到网格蛋白依赖性内化途径。总之,这些数据表明棕榈酰化可能参与了通过选择性内吞途径指导激动剂依赖性 D1 受体内化。