新型噻吩-三唑二氮卓类药物刺激肝脏载脂蛋白A-I的产生:经典苯二氮卓类受体、PAF受体和溴结构域结合的作用。

Lipid insights Pub Date : 2013-12-22 eCollection Date: 2013-01-01 DOI:10.4137/Lpi.s13258
Herman J Kempen, Daniel Bellus, Oleg Fedorov, Silke Nicklisch, Panagis Filippakopoulos, Sarah Picaud, Stefan Knapp
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引用次数: 15

摘要

三唑二氮卓类药物(TZDs)能显著刺激培养肝细胞载脂蛋白A-I (apoA-I)的表达和分泌。先前已有研究表明,噻唑- tzd Ro 11-1464可增加小鼠血浆中apoA-I的水平,并在巨噬细胞中逆转胆固醇运输。然而,这些影响仅在高剂量下才会出现,在高剂量下,该化合物可以作用于中枢苯二氮卓(BZD)受体或血小板活化因子(PAF)受体,干扰其潜在的效用。在这项工作中,我们描述了两个新的噻吩tzds MDCO-3770和MDCO-3783,它们都来自于Ro 11-1464。这些化合物在培养的肝细胞中表现出与Ro 11-1464相同的apoA-I产生、代谢稳定性和缺乏细胞毒性的高效率,但它们不与中枢BZD受体和PAF受体结合。喹唑啉RVX-208在刺激apoA-I产生方面效果较差,并表现出细胞毒性迹象。目前已知某些刺激apoA-I产生的TZDs是溴域(BRD)外端(BET)蛋白BRDT、BRD2、BRD3和BRD4的抑制剂,这种抑制作用被推断为它们影响apoA-I表达的主要分子机制。我们在这里发现,噻吩- tzd (+)- jq1,一种有效的BET抑制剂,强烈刺激Hep-G2细胞中apoA-I的产生,但它的对映体(-)- jq1,没有BET抑制剂活性,也对apoA-I的产生有相当大的影响。MDCO-3770和MDCO-3783在体外对BRD3和BRD4也有抑制作用,其效价略低于(+)-JQ1。我们得出结论,thieno-TZDs对apoA-I表达的影响不是由于抑制BZD或PAF受体,也不能完全用BET蛋白的转录抑制来解释。
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Stimulation of Hepatic Apolipoprotein A-I Production by Novel Thieno-Triazolodiazepines: Roles of the Classical Benzodiazepine Receptor, PAF Receptor, and Bromodomain Binding.

Expression and secretion of apolipoprotein A-I (apoA-I) by cultured liver cells can be markedly stimulated by triazolodiazepines (TZDs). It has been shown previously that the thieno-TZD Ro 11-1464 increases plasma levels of apoA-I and in vivomacrophage reverse cholesterol transport in mice. However, these effects were only seen at high doses, at which the compound could act on central benzodiazepine (BZD) receptors or platelet activating factor (PAF) receptors, interfering with its potential utility. In this work, we describe 2 new thieno-TZDs MDCO-3770 and MDCO-3783, both derived from Ro 11-1464. These compounds display the same high efficacy on apoA-I production, metabolic stability, and lack of cytotoxicity in cultured hepatocytes as Ro 11-1464, but they do not bind to the central BZD receptor and PAF receptor. The quinazoline RVX-208 was less efficacious in stimulating apoA-I production and displayed signs of cytotoxicity. Certain TZDs stimulating apoA-I production are now known to be inhibitors of bromodomain (BRD) extra-terminal (BET) proteins BRDT, BRD2, BRD3, and BRD4, and this inhibition was inferred as a main molecular mechanism for their effect on apoA-I expression. We show here that the thieno-TZD (+)-JQ1, a potent BET inhibitor, strongly stimulated apoA-I production in Hep-G2 cells, but that its enantiomer (-)-JQ1, which has no BET inhibitor activity, also showed considerable effect on apoA-I production. MDCO-3770 and MDCO-3783 also inhibited BRD3 and BRD4 in vitro, with potency somewhat below that of (+)-JQ1. We conclude that the effect of thieno-TZDs on apoA-I expression is not due to inhibition of the BZD or PAF receptors and is not completely explained by transcriptional repression by BET proteins.

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