PO.ET09.02 · 实验与分子治疗

发现一种高效、选择性的KAT6A降解剂ATH-002,在临床前研究中表现出强大的抗肿瘤活性且血液毒性风险低

Discovery of a highly potent and selective KAT6A degrader ATH-002 that demonstrates robust anti-tumor activity with a low risk of hematotoxicity in preclinical studies

海报缩略图:发现一种高效、选择性的KAT6A降解剂ATH-002,在临床前研究中表现出强大的抗肿瘤活性且血液毒性风险低
编号 7076 展板 23 时间 4/22 09:00–12:00 区域 Section 12 主讲 Feng Zhou, PhD
分会场 Epigenetic Modulators 2
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作者与单位 Authors & Affiliations

Hanyu Wang, Lei Jiang, Youxi Chen, Baoying Chen, Yuyao Zhang, Nianfeng Huang, Fan Yang, Feng Zhou

Atheron therapeutics, Ltd., Shanghai, China

摘要 Abstract

中文摘要
KAT6A是MYST家族组蛋白乙酰转移酶的成员,通过乙酰化组蛋白H3K23调控基因转录,从而参与多种细胞过程,如增殖和分化。在多种癌症中已观察到KAT6A的扩增或过表达,包括乳腺癌,其中约15%的患者存在KAT6A扩增,突显了其作为一个有前景的治疗靶点的潜力。PF-07248144是首个进入临床的KAT6A/6B双重抑制剂,在ER+HER2−转移性乳腺癌中表现出持久的抗肿瘤活性,尤其是与氟维司群联用时。然而,1期数据也揭示了中性粒细胞减少和贫血等血液学剂量限制性毒性。这些靶向毒性源于对KAT6A/6B的同时抑制,二者协同促进造血干细胞发育。此外,研究提示KAT6A具有非酶功能,通过与PARP相互作用参与DNA损伤修复,并且观察到敲低KAT6A比单纯阻断其乙酰转移酶活性更有效地抑制KMT2A重排AML细胞的增殖。这些证据为开发一种具有改善疗效和降低血液毒性潜力的KAT6A特异性降解剂提供了理论依据。在此,我们报道了一种强效的口服KAT6A降解剂ATH-002。它以DC50<1nM有效诱导KAT6A降解,且当E3失活时降解可被消除,提示其通过泛素-蛋白酶体系统经E3连接酶结合直接介导。全蛋白质组分析表明其对包括KAT6B和其他MYST家族成员在内的蛋白质具有优异的选择性。ATH-002在KAT6A扩增的细胞系中强效抑制增殖,但在KAT6A低表达的细胞中则无此作用,表明该活性由特异性KAT6A降解驱动。机制研究进一步显示,ATH-002剂量依赖性地阻断H3K23乙酰化,下调ER表达,并同时降低BRPF-1水平,后者可能由旁观者降解效应诱导。与KAT6A/6B抑制剂相比,ATH-002显著降低血液毒性,尤其是在髓系谱系中,EC50>30 μM。在KAT6A扩增的异种移植模型中,ATH-002有效抑制肿瘤生长,且与KAT6A降解相关。除单药治疗外,ATH-002与SERD或CDK4/6抑制剂联用时表现出增强的抗增殖效应,且无重叠的血液毒性,提示KAT6A降解剂与标准治疗(SOC)联合应用的潜力。总之,我们的发现支持ATH-002作为治疗KAT6A扩增型肿瘤的临床候选药物。
查看英文原文 English abstract
KAT6A, a member of the MYST family of histone acetyltransferases, regulates gene transcription by acetylating histone H3K23 and thereby participates in multiple cellular processes, such as proliferation and differentiation. Amplification or overexpression of KAT6A have been observed in various cancers, including breast cancer, where it is amplified in approximately 15% of patients, highlighting its potential as a promising target for therapy. PF-07248144, the first KAT6A/6B dual inhibitor to enter the clinic, demonstrates durable anti-tumor activity in ER+HER2− metastatic breast cancer, especially in combination with fulvestrant. However, Phase 1 data also revealed hematologic dose-limiting toxicities of neutropenia and anemia. The on-target toxicities resulting from the simultaneous inhibition of KAT6A/6B, which synergistically promote hematopoietic stem cell development. Furthermore, studies have suggested that KAT6A has non-enzymatic functions by its role in DNA damage repair via interaction with PARP and by the observation that depletion of KAT6A more efficiently suppresses the proliferation of KMT2A-rearranged AML cells than blocking its acetyltransferase activity alone. These evidences provide the rationale to develop a KAT6A-specific degrader with the potential for improved efficacy and reduced hematotoxicity. Here we report a potent and oral KAT6A degrader, ATH-002. It effectively induced KAT6A degradation with DC 50 <1nM, and the degradation could be abolished when E3 was inactive, suggesting a direct mediation by the ubiquitin-proteasome system via E3-ligase binding. Global proteome analysis demonstrated an excellent selectivity against proteins, including KAT6B and other MYST family members. ATH-002 robustly inhibited proliferation in KAT6A amplified cell lines, but not in cells with low KAT6A expression, indicating the activity was driven by the specific KAT6A degradation. Mechanism studies further showed that ATH-002 dose-dependently blocked the H3K23 acetylation, down-regulated ER expression, and concurrently reduced BRPF-1 level, which might be induced by a bystander degradation effect. In contrast to KAT6A/6B inhibitors, ATH-002 significantly decreased hematotoxicity, especially in the myeloid lineage with EC 50 >30 μM. In a KAT6A amplified xenograft model, ATH-002 effectively inhibited tumor growth, which correlated with KAT6A degradation. Besides monotherapy, ATH-002 displayed an enhanced anti-proliferation effect in combination with SERDs or CDK4/6 inhibitors without overlapping hematotoxicity, implying a potential application of KAT6A degrader and SOC therapy. Collectively, our findings support ATH-002 as a clinical candidate for the treatment of KAT6A-amplified tumors.
利益披露 Disclosure
H. Wang, None.. L. Jiang, None.. Y. Chen, None.. B. Chen, None.. Y. Zhang, None.. N. Huang, None.. F. Yang, None.. F. Zhou, None.

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