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首页> 外文期刊>The Journal of biological chemistry >Binding of PDZ-RhoGEF to ATP-binding Cassette Transporter A1 (ABCA1) Induces Cholesterol Efflux through RhoA Activation and Prevention of Transporter Degradation
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Binding of PDZ-RhoGEF to ATP-binding Cassette Transporter A1 (ABCA1) Induces Cholesterol Efflux through RhoA Activation and Prevention of Transporter Degradation

机译:PDZ-rhogef至ATP结合盒式磁带转运蛋白A1(ABCA1)的结合通过RHOA活化和预防转运剂降解诱导胆固醇流出

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摘要

ATP-binding cassette transporter A1 (ABCA1)-mediated lipid efflux to apolipoprotein A1 (apoA-I) initiates the biogenesis of high density lipoprotein. Here we show that the Rho guanine nucleotide exchange factors PDZ-RhoGEF and LARG bind to the C terminus of ABCA1 by a PDZ-PDZ interaction and prevent ABCA1 protein degradation by activating RhoA. ABCA1 is a protein with a short half-life, and apoA-I stabilizes ABCA1 protein; however, depletion of PDZ-RhoGEF/LARG by RNA interference suppressed the apoA-I stabilization of ABCA1 protein in human primary fibroblasts. Exogenous PDZ-RhoGEF expression activated RhoA and increased ABCA1 protein levels and cholesterol efflux activity. Likewise, forced expression of a constitutively active RhoA mutant significantly increased ABCA1 protein levels, whereas a dominant negative RhoA mutant decreased them. The constitutively active RhoA retarded ABCA1 degradation, thus accounting for its ability to increase ABCA1 protein. Moreover, stimulation with apoA-I transiently activated RhoA, and the pharmacological inhibition of RhoA or the dominant negative RhoA blocked the ability of apoA-I to stabilize ABCA1. Finally, depletion of RhoA or RhoGEFs/RhoA reduces the cholesterol efflux when transcriptional regulation via PPARγ is eliminated. Taken together, our results have identified a novel physical and functional interaction between ABCA1 and PDZ-RhoGEF/LARG, which activates RhoA, resulting in ABCA1 stabilization and cholesterol efflux activity.
机译:ATP结合盒转运蛋白A1(ABCA1)介导的脂质流出至载脂蛋白A1(APOA-1)引发了高密度脂蛋白的生物发生。在这里,我们表明Rho鸟嘌呤核苷酸交换因子PDZ-Rhogef和Larg通过PDZ-PDZ相互作用与ABCA1的C末端结合,并通过激活RHOA来防止ABCA1蛋白质降解。 ABCA1是一个含有短半衰期的蛋白质,APOA-I稳定ABCA1蛋白;然而,通过RNA干扰的PDZ-Rhogef / Larg的耗尽抑制了人初生成纤维细胞中ABCA1蛋白的APOA-I稳定。外源性PDZ-Rhogef表达活化RhOA和增加ABCA1蛋白水平和胆固醇的流出活性。同样,强迫表达的组成型活性的RHOA突变体显着增加了ABCA1蛋白水平,而显性负rhOA突变体均降低。组成型活性的RHOA延迟ABCA1降解,从而占其增加ABCA1蛋白的能力。此外,用ApoA-I瞬时活化的RhOA刺激,以及RhOA的药理抑制或显性负rhOA阻断了Apoa-1稳定ABCA1的能力。最后,当消除了通过PPARγ的转录调节时,RhOA或Rhogefs / RhOA的耗尽减少了胆固醇流出。在一起,我们的结果鉴定了ABCA1和PDZ-Rhogef / Larg之间的新型物理和功能相互作用,其激活RHOA,导致ABCA1稳定和胆固醇流出活性。

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