首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >Modification at the acidic domain of RXR agonists has little effect on permissive RXR-heterodimer activation.
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Modification at the acidic domain of RXR agonists has little effect on permissive RXR-heterodimer activation.

机译:RXR激动剂酸性结构域的改性对允许RXR-异二聚体活化的影响几乎没有影响。

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摘要

Retinoid X receptors (RXRs) function as homo- or heterodimers with other nuclear receptors, such as peroxisome proliferator-activated receptors (PPARs), which are targets for treatment of hyperlipidemia and type 2 diabetes, or liver X receptors (LXRs), which are involved in glucose/lipid metabolism. PPAR/RXR or LXR/RXR are known as permissive RXR-heterodimers because they are activated by RXR agonists alone. Interestingly, the pattern of RXR-heterodimer activation is different depending on the RXR agonist structure, but the structure-activity relationship has not been reported. Here we show that modification or replacement of the carboxyl group in the acidic domain of RXR agonists has little or no effect on permissive RXR-heterodimer activation. Phosphonic acid (9), tetrazole (10), and hydroxamic acid (12) analogues were synthesized from the common bromo intermediate 7. Except for 9, these compounds showed RXR full-agonistic activities in the concentration range of 1-10 microM. The order of agonistic activity toward both PPARgamma/RXRalpha and LXRalpha/RXRalpha was the same as it was for RXR, that is, 11>10>12. These results should be useful for the development of RXR agonists with improved bioavailability.
机译:视黄醇X受体(RXRS)用作其他核受体的同源或异二聚体,例如过氧化物体增殖物激活的受体(PPAR),其是治疗高脂血症和2型糖尿病的靶标,或肝X受体(LXRS)参与葡萄糖/脂质代谢。 PPAR / RXR或LXR / RXR称为允许RXR-异端二极管,因为它们是由RXR激动剂单独激活的。有趣的是,RXR-异二聚体激活的模式取决于RXR激动剂结构,但尚未报告结构活性关系。在这里,我们表明RXR激动剂酸性结构域中的羧基的修饰或更换对允许的RXR-异二聚体活化几乎没有或没有影响。膦酸(9),四唑(10)和羟肟酸(12)类似物由普通溴中间体7合成。除了9,这些化合物在1-10微米的浓度范围内显示RXR全激动活性。对PPARγ/ rxralpha和LXRARPHA / RXRARHA的激动活动顺序与RXR相同,即11> 10> 12。这些结果对于具有改善的生物利用度的RXR激动剂的发展应该是有用的。

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