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Andrographolide derivatives inhibit guanine nucleotide exchange and abrogate oncogenic Ras function

机译:穿心莲内酯衍生物抑制鸟嘌呤核苷酸交换并消除致癌Ras功能

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摘要

Aberrant signaling by oncogenic mutant rat sarcoma (Ras) proteins occurs in ∼15% of all human tumors, yet direct inhibition of Ras by small molecules has remained elusive. Recently, several small-molecule ligands have been discovered that directly bind Ras and inhibit its function by interfering with exchange factor binding. However, it is unclear whether, or how, these ligands could lead to drugs that act against constitutively active oncogenic mutant Ras. Using a dynamics-based pocket identification scheme, ensemble docking, and innovative cell-based assays, here we show that andrographolide (AGP)—a bicyclic diterpenoid lactone isolated from Andrographis paniculata—and its benzylidene derivatives bind to transient pockets on Kirsten-Ras (K-Ras) and inhibit GDP–GTP exchange. As expected for inhibitors of exchange factor binding, AGP derivatives reduced GTP loading of wild-type K-Ras in response to acute EGF stimulation with a concomitant reduction in MAPK activation. Remarkably, however, prolonged treatment with AGP derivatives also reduced GTP loading of, and signal transmission by, oncogenic mutant K-RasG12V. In sum, the combined analysis of our computational and cell biology results show that AGP derivatives directly bind Ras, block GDP–GTP exchange, and inhibit both wild-type and oncogenic K-Ras signaling. Importantly, our findings not only show that nucleotide exchange factors are required for oncogenic Ras signaling but also demonstrate that inhibiting nucleotide exchange is a valid approach to abrogating the function of oncogenic mutant Ras.
机译:致癌突变的大鼠肉瘤(Ras)蛋白引起的异常信号转导发生在所有人类肿瘤的约15%中,但是仍然无法通过小分子直接抑制Ras。最近,已经发现了几种小分子配体,它们直接与Ras结合并通过干扰交换因子结合而抑制其功能。但是,目前尚不清楚这些配体是否或如何导致产生对抗组成型活性致癌突变体Ras起作用的药物。使用基于动力学的口袋识别方案,整体对接和创新的基于细胞的测定方法,我们在这里显示穿心莲内酯(AGP)(一种从穿心莲中分离出的双环二萜内酯)及其亚苄基衍生物与Kirsten-Ras( K-Ras)并抑制GDP-GTP交换。正如预期的交换因子结合抑制剂一样,AGP衍生物在响应急性EGF刺激时降低了野生型K-Ras的GTP负荷,同时降低了MAPK活化。然而,值得注意的是,长时间使用AGP衍生物治疗还减少了致癌突变体K-RasG12V的GTP负载和信号传输。总之,对我们的计算和细胞生物学结果的综合分析表明,AGP衍生物直接结合Ras,阻止GDP-GTP交换,并抑制野生型和致癌性K-Ras信号传导。重要的是,我们的发现不仅表明致癌Ras信号传导需要核苷酸交换因子,而且还表明抑制核苷酸交换是废除致癌突变体Ras功能的有效方法。

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