Stimulating macropinocytosis of peptide-drug conjugates through DNA-dependent protein kinase inhibition for treating KRAS-mutant cancer

克拉斯 突变体 癌细胞 癌症研究 胞饮病 雅普1 生物 癌症 化学 结直肠癌 受体 生物化学 基因 转录因子 遗传学 内吞作用
作者
Ha Rin Kim,Seong Jin Park,Young Seok Cho,Mudhibadhi Knowledge Moyo,Jeong Uk Choi,Na Kyeong Lee,Seung Woo Chung,Seho Kweon,Jooho Park,Byoungmo Kim,Yoon Gun Ko,Joo Hye Yeo,Jinu Lee,Sang Yoon Kim,Youngro Byun
出处
期刊:Journal of Controlled Release [Elsevier BV]
卷期号:372: 176-193 被引量:8
标识
DOI:10.1016/j.jconrel.2024.06.028
摘要

KRAS-mutant cancers, due to their protein targeting complexity, present significant therapeutic hurdles. The identification of the macropinocytic phenotype in these cancers has emerged as a promising alternative therapeutic target. Our study introduces MPD1, an macropinocytosis-targeting peptide-drug conjugates (PDC), which is developed to treat KRAS mutant cancers. This PDC is specifically designed to trigger a positive feedback loop through its caspase-3 cleavable characteristic. However, we observe that this loop is hindered by DNA-PK mediated DNA damage repair processes in cancer cells. To counter this impediment, we employ AZD7648, a DNA-PK inhibitor. Interestingly, the combined treatment of MPD1 and AZD7648 resulted in a 100% complete response rate in KRAS-mutant xenograft model. We focus on the synergic mechanism of it. We discover that AZD7648 specifically enhances macropinocytosis in KRAS-mutant cancer cells. Further analysis uncovers a significant correlation between the increase in macropinocytosis and PI3K signaling, driven by AMPK pathways. Also, AZD7648 reinforces the positive feedback loop, leading to escalated apoptosis and enhanced payload accumulation within tumors. AZD7648 possesses broad applications in augmenting nano-sized drug delivery and preventing DNA repair resistance. The promising efficacy and evident synergy underscore the potential of combining MPD1 with AZD7648 as a strategy for treating KRAS-mutant cancers.
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