PO.ET09.03 · 实验与分子治疗

一种同类首创的强效EZH2降解剂AXT-1003在多种淋巴瘤和实体瘤中展现出稳健的抗肿瘤活性

A first-in-class potent EZH2 degrader, AXT-1003, exhibits robust anti-tumor activity across multiple lymphomas and solid tumors

海报缩略图:一种同类首创的强效EZH2降解剂AXT-1003在多种淋巴瘤和实体瘤中展现出稳健的抗肿瘤活性
编号 4595 展板 5 时间 4/21 09:00–12:00 区域 Section 18 主讲 Yong Yang, PhD
分会场 Proximity-Induced Drug Discovery 1
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作者与单位 Authors & Affiliations

Yong Yang, Huiya Huang, Enxing Zhou, Yan Lin, Qian Gao, Alex Xu

Axter Therapeutics, Beijing, China

摘要 Abstract

中文摘要
Zeste同源物增强子2(EZH2)作为多梳抑制复合物2(PRC2)的核心酶组分,介导组蛋白H3赖氨酸27的三甲基化(H3K27Me3),以维持靶基因的表观遗传抑制。EZH2表达的突变和/或失调是多种癌症的标志,且常与患者不良预后相关。若干S-腺苷甲硫氨酸(SAM)竞争性EZH2抑制剂(可抑制EZH2的甲基转移酶活性)在治疗肉瘤和淋巴瘤方面已展现出有前景的临床结果,包括FDA批准的tazemetostat(EPZ-6438)。然而,尽管这些EZH2抑制剂能有效降低H3K27Me3,但其单药治疗在大多数实体瘤中疗效有限。越来越多的证据表明,EZH2在实体瘤中常以非经典方式、以不依赖甲基转移酶的方式发挥功能,通过与致癌转录因子结合而作为转录共激活因子。因此,通过降解来靶向EZH2对于治疗EZH2依赖性癌症可能具有优势。在此,我们报道了一种同类首创、口服、强效的EZH2降解剂AXT-1003的研发。在多种体内外肿瘤模型中,该降解剂促进了EZH2蛋白的剂量和时间依赖性降低,进而导致H3K27Me3的显著抑制。同时,AXT-1003对EZH2的转录水平无显著影响,其蛋白表达可被MG-132(蛋白酶体抑制剂)恢复。我们的泛素组学和蛋白质组学研究表明,AXT-1003同时触发EZH2蛋白的泛素化和降解,提示AXT-1003通过泛素-蛋白酶体途径作为一种EZH2靶向降解剂。此外,AXT-1003以非SAM竞争性方式在纳摩尔浓度下有效抑制野生型EZH2及其突变体的酶活性,并且对EZH2抑制的选择性优于EPZ-6438。AXT-1003对携带野生型或突变型EZH2的各种淋巴瘤细胞系以及实体瘤细胞系表现出更广泛、更强的抗增殖活性。值得注意的是,在来自卵巢透明细胞癌(OCCC)样本的患者来源类器官(PDO)模型中,无论ARID1A状态如何,AXT-1003均展现出优于cisplatin或mevrometostat(PF-06821497)的疗效。AXT-1003在若干癌细胞系来源的异种移植(CDX)小鼠模型中比EPZ-6438更有效地抑制肿瘤生长。此外,AXT-1003与enzalutamide的体内联合治疗在前列腺癌(LNCaP)CDX小鼠模型中显示出协同疗效。总之,我们的临床前数据凸显了AXT-1003的治疗潜力,并支持其在EZH2驱动癌症患者中正在进行的临床评估。
查看英文原文 English abstract
Enhancer of Zeste Homolog 2 (EZH2) acts as the core enzymatic component of the Polycomb Repressive Complex 2 (PRC2), which mediates trimethylation of histone H3 lysine 27 (H3K27Me3) to maintain the epigenetic repression of target genes. Mutated and/or dysregulated EZH2 expression is a hallmark of various cancers and is frequently correlated with poor patient prognosis. Several S-adenosylmethionine (SAM)-competitive EZH2 inhibitors, which suppress methyltransferase activity of EZH2, have clinically shown promising results in treating sarcoma and lymphoma, including the FDA-approved tazemetostat (EPZ-6438). However, monotherapy with these EZH2 inhibitors has limited efficacy in most solid tumors, even though they effectively reduce the H3K27Me3. Growing evidence suggests that EZH2 commonly functions noncanonically, in a methyltransferase-independent manner, as a transcriptional coactivator through associating with oncogenic transcription factors in solid tumors. Therefore, targeting EZH2 with degradation can be advantageous for the treatment of EZH2-dependent cancers.​ Herein, we reported the development of a first-in-class, oral, and potent EZH2 degrader, AXT-1003. Across multiple in vitro and in vivo tumor models, this degrader promoted a dose- and time-dependent reduction of EZH2 protein, which led to significant inhibition of H3K27Me3. Meanwhile, AXT-1003 had no significant effect on EZH2 at transcriptional levels, and its protein expression was restored by MG-132 (proteasome inhibitor). Our ubiquitinomics and proteomics studies demonstrated that AXT-1003 simultaneously triggered ubiquitination and degradation of EZH2 protein, suggesting AXT-1003 serves as an EZH2-targeting degrader via the ubiquitin-proteasome pathway. Additionally, AXT-1003 effectively inhibited enzymatic activity of wild-type EZH2 and its mutants at nanomolar concentrations in a non-SAM-competitive manner and exhibited greater selectivity for EZH2 inhibition than EPZ-6438. AXT-1003 exhibited broader and stronger anti-proliferative activities against various lymphoma cell lines with wild-type or mutated EZH2 as well as solid tumor cell lines. Notably, in the patient-derived organoid (PDO) models from ovarian clear cell carcinoma (OCCC) samples, AXT-1003 displayed superior efficacy compared with cisplatin or mevrometostat (PF-06821497), regardless of ARID1A status. AXT-1003 suppressed tumor growth more effectively than EPZ-6438 in several cancer cell-derived xenograft (CDX) mice models. Furthermore, the in vivo combination treatment of AXT-1003 with enzalutamide showed synergistic efficacy in a prostate cancer (LNCaP) CDX mice model. In conclusion, our preclinical data highlight the therapeutic potential of AXT-1003 and support its ongoing clinical evaluation in patients with EZH2-driven cancers.
利益披露 Disclosure
Y. Yang, None.. H. Huang, None.. E. Zhou, None.. Y. Lin, None.. Q. Gao, None.. A. Xu, None.

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