Trametinib Thwarts Activation of Survival Pathways Induced by Pro-ferroptotic Drug Conjugate ACXT-3102 Resulting in Enhanced Pancreatic Cancer Cell Death.

IF 5.3 2区 医学 Q1 ONCOLOGY
Kumar S Bishnupuri, Kenneth F Newcomer, Qingqing Gong, Rony Takchi, Li Ye, Suwanna Vangveravong, Lauren Ross, Brian A Van Tine, William G Hawkins, Dirk Spitzer
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Abstract

Ferroptosis has recently been described as an iron-dependent subroutine of programmed cell death. Cancers driven by oncogenic Ras mutations, such as pancreatic ductal adenocarcinoma, are particularly vulnerable to ferroptosis and are thus promising candidates for antineoplastic drugs targeting this unique form of programmed cell death. Our group has developed a cancer-specific drug conjugate (ACXT-3102), consisting of a proapoptotic sigma-2 ligand as a delivery moiety (SV119), linked to an inhibitor of the cystine antiporter xCT (dm-erastin), an established inducer of ferroptosis. We hypothesized that ACXT-3102 would trigger apoptosis and ferroptosis via its discrete chemical components, representing a new approach to clinical therapy for pancreatic ductal adenocarcinoma. In vitro cell viability assays corroborated our earlier findings that ACXT-3102 is a potent inducer of cancer cell death. The sigma-2 delivery component of ACXT-3102 induced canonical markers of apoptosis, including cleaved caspase-3/7 and PARP, whereas the dm-erastin cargo component induced canonical markers of ferroptosis, including lipid peroxidation and consumption of glutathione peroxidase 4. These changes resulted in the accumulation of reactive oxygen species. Subsequently, we found that ACXT-3102-mediated cell death was accompanied by the activation of MAPK/ERK signaling, presumably via the reactive oxygen species-dependent degradation of dual-specificity phosphatase 6, a negative regulator of MAPK/ERK phosphorylation. We suspected that this was a compensatory reaction and that ACXT-3102-induced cancer cell death would be augmented by inhibition of MAPK/ERK signaling. We successfully combined ACXT-3102 with trametinib (MEK inhibitor) to enhance the overall efficacy of treatment in vitro and in vivo, presumably by targeting ACXT-3102-induced upregulation of MAPK/ERK.

曲美替尼阻断促铁药物偶联物ACXT-3102诱导的生存途径激活,导致胰腺癌细胞死亡增加。
铁下垂最近被描述为程序性细胞死亡的铁依赖性子程序。由致癌Ras突变驱动的癌症,如胰腺导管腺癌,特别容易发生铁下垂,因此有希望使用针对这种独特形式的程序性细胞死亡的抗肿瘤药物。我们的团队开发了一种癌症特异性药物偶联物(ACXT-3102),由促凋亡的sigma-2配体作为递送部分(SV119)组成,与胱氨酸反转运体xCT的抑制剂(dm-erastin)连接,后者是一种已建立的铁凋亡诱导剂。我们假设ACXT-3102通过其独立的化学成分触发细胞凋亡和铁凋亡,代表了一种新的临床治疗胰腺导管腺癌的方法。体外细胞活力测定证实了我们早期的发现,即ACXT-3102是一种有效的癌细胞死亡诱导剂。ACXT-3102的sigma-2递送成分诱导凋亡的典型标志物,包括裂解的caspase-3/7和PARP,而dm-erastin货运成分诱导铁死亡的典型标志物,包括脂质过氧化和谷胱甘肽过氧化物酶4的消耗。这些变化导致活性氧的积累。随后,我们发现acxt -3102介导的细胞死亡伴随着MAPK/ERK信号的激活,可能是通过活性氧物种依赖的双特异性磷酸酶6的降解,这是MAPK/ERK磷酸化的负调节因子。我们怀疑这是一种代偿反应,acxt -3102诱导的癌细胞死亡将通过抑制MAPK/ERK信号而增强。我们成功地将ACXT-3102与trametinib (MEK抑制剂)联合使用,提高了体外和体内的整体治疗效果,可能是通过靶向ACXT-3102诱导的MAPK/ERK上调。
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来源期刊
CiteScore
11.20
自引率
1.80%
发文量
331
审稿时长
3 months
期刊介绍: Molecular Cancer Therapeutics will focus on basic research that has implications for cancer therapeutics in the following areas: Experimental Cancer Therapeutics, Identification of Molecular Targets, Targets for Chemoprevention, New Models, Cancer Chemistry and Drug Discovery, Molecular and Cellular Pharmacology, Molecular Classification of Tumors, and Bioinformatics and Computational Molecular Biology. The journal provides a publication forum for these emerging disciplines that is focused specifically on cancer research. Papers are stringently reviewed and only those that report results of novel, timely, and significant research and meet high standards of scientific merit will be accepted for publication.
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