首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Cholesterol binding, efflux, and a PDZ-interacting domain of scavenger receptor-BI mediate HDL-initiated signaling.
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Cholesterol binding, efflux, and a PDZ-interacting domain of scavenger receptor-BI mediate HDL-initiated signaling.

机译:胆固醇结合、外排和清道夫受体-BI 的 PDZ 相互作用域介导 HDL 启动的信号传导。

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摘要

The binding of HDL to scavenger receptor-BI (SR-BI) mediates cholesterol movement. HDL also induces multiple cellular signals, which in endothelium occur through SR-BI and converge to activate eNOS. To determine the molecular basis of a signaling event induced by HDL, we examined the proximal mechanisms in HDL activation of eNOS. In endothelial cells, HDL and methyl-beta-cyclodextrin caused comparable eNOS activation, whereas cholesterol-loaded methyl-beta-cyclodextrin had no effect. Phosphatidylcholine-loaded HDL caused greater stimulation than native HDL, and blocking antibody against SR-BI, which prevents cholesterol efflux, prevented eNOS activation. In a reconstitution model in COS-M6 cells, wild-type SR-BI mediated eNOS activation by both HDL and small unilamellar vesicles (SUVs), whereas the SR-BI mutant AVI, which is incapable of efflux to SUV, transmitted signal by only HDL. In addition, eNOS activation by methyl-beta-cyclodextrin was SR-BI dependent. Studies of mutant and chimeric class B scavenger receptors revealed that the C-terminal cytoplasmic PDZ-interacting domain and the C-terminal transmembrane domains of SR-BI are both necessary for HDL signaling. Furthermore, we demonstrated direct binding of cholesterol to the C-terminal transmembrane domain using a photoactivated derivative of cholesterol. Thus, HDL signaling requires cholesterol binding and efflux and C-terminal domains of SR-BI, and SR-BI serves as a cholesterol sensor on the plasma membrane.
机译:高密度脂蛋白与清道夫受体-BI(SR-BI)的结合介导胆固醇运动。HDL 还诱导多种细胞信号,这些信号在内皮细胞中通过 SR-BI 发生并汇聚以激活 eNOS。为了确定 HDL 诱导的信号转导事件的分子基础,我们研究了 eNOS HDL 激活的近端机制。在内皮细胞中,HDL 和甲基-β-环糊精引起相当的 eNOS 激活,而胆固醇负载的甲基-β-环糊精没有影响。磷脂酰胆碱负载的 HDL 比天然 HDL 引起更大的刺激,并且阻断针对 SR-BI 的抗体,可防止胆固醇外流,阻止 eNOS 激活。在 COS-M6 细胞的重建模型中,野生型 SR-BI 介导了 HDL 和小单层囊泡 (SUV) 的 eNOS 激活,而不能外流到 SUV 的 SR-BI 突变体 AVI 仅通过 HDL 传输信号。此外,甲基-β-环糊精对 eNOS 的激活具有 SR-BI 依赖性。对突变体和嵌合 B 类清道夫受体的研究表明,SR-BI 的 C 端细胞质 PDZ 相互作用结构域和 C 端跨膜结构域都是 HDL 信号传导所必需的。此外,我们证明了胆固醇与C末端跨膜结构域的直接结合,使用胆固醇的光活化衍生物。因此,HDL 信号传导需要胆固醇结合以及 SR-BI 的外排和 C 末端结构域,而 SR-BI 充当质膜上的胆固醇传感器。

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