首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Discovery of the Selective Androgen Receptor Modulator MK-0773 Using a Rational Development Strategy Based on Differential Transcriptional Requirements for Androgenic Anabolism Versus Reproductive Physiology
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Discovery of the Selective Androgen Receptor Modulator MK-0773 Using a Rational Development Strategy Based on Differential Transcriptional Requirements for Androgenic Anabolism Versus Reproductive Physiology

机译:发现基于选择性转录需求的雄激素合成代谢对生殖生理的合理发展战略的选择性雄激素受体调节剂MK-0773。

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摘要

Selective androgen receptor modulators (SARMs) are androgen receptor (AR) ligands that induce anabolism while having reduced effects in reproductive tissues. In various experimental contexts SARMs fully activate, partially activate, or even antagonize the AR, but how these complex activities translate into tissue selectivity is not known. Here, we probed receptor function using >1000 synthetic AR ligands. These compounds produced a spectrum of activities in each assay ranging from 0 to 100% of maximal response. By testing different classes of compounds in ovariectomized rats, we established that ligands that transactivated a model promoter 40–80% of an agonist, recruited the coactivator GRIP-1 <15%, and stabilized the N-/C-terminal interdomain interaction <7% induced bone formation with reduced effects in the uterus and in sebaceous glands. Using these criteria, multiple SARMs were synthesized including MK-0773, a 4-aza-steroid that exhibited tissue selectivity in humans. Thus, AR activated to moderate levels due to reduced cofactor recruitment, and N-/C-terminal interactions produce a fully anabolic response, whereas more complete receptor activation is required for reproductive effects. This bimodal activation provides a molecular basis for the development of SARMs.
机译:选择性雄激素受体调节剂(SARMs)是雄激素受体(AR)配体,可诱导合成代谢,同时对生殖组织的作用降低。在各种实验环境中,SARM可以完全激活,部分激活甚至拮抗AR,但尚不清楚这些复杂的活动如何转化为组织选择性。在这里,我们使用> 1000个合成AR配体探测了受体功能。这些化合物在每次测定中产生的光谱范围为最大反应的0%至100%。通过在去卵巢大鼠中测试不同类别的化合物,我们确定了可激活40-80%激动剂模型启动子,募集辅助激活剂GRIP-1 <15%并稳定N- / C末端域间相互作用<7的配体%诱导的骨形成在子宫和皮脂腺中的作用降低。使用这些标准,合成了多个SARM,包括MK-0773(一种在人类中表现出组织选择性的4-氮杂甾体)。因此,由于辅因子减少,AR被激活至中等水平,并且N- / C-末端相互作用产生了完全的合成代谢反应,而生殖作用则需要更完全的受体激活。这种双峰激活为SARM的发展提供了分子基础。

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