马尔克斯
生物
程序性细胞死亡
癌症研究
替莫唑胺
细胞凋亡
细胞生物学
信号转导
蛋白激酶C
胶质瘤
生物化学
作者
Nicholas Eustace,Joshua C. Anderson,Jason M. Warram,Hayley Widden,Rune Troelsgaard Pedersen,Hasan Alrefai,Zeel Patel,Patricia H. Hicks,William J. Placzek,G. Yancey Gillespie,Anita B. Hjelmeland,Christopher D. Willey
出处
期刊:Oncogene
[Springer Nature]
日期:2020-10-19
卷期号:39 (46): 6961-6974
被引量:11
标识
DOI:10.1038/s41388-020-01511-9
摘要
Glioblastoma (GBM) is an aggressive malignancy with limited effectiveness of standard of care therapies including surgery, radiation, and temozolomide chemotherapy necessitating novel therapeutics. Unfortunately, GBMs also harbor several signaling alterations that protect them from traditional therapies that rely on apoptotic programmed cell death. Because almost all GBM tumors have dysregulated phosphoinositide signaling as part of that process, we hypothesized that peptide mimetics derived from the phospholipid binding domain of Myristoylated alanine-rich C-kinase substrate (MARCKS) could serve as a novel GBM therapeutic. Using molecularly classified patient-derived xenograft (PDX) lines, cultured in stem-cell conditions, we demonstrate that cell permeable MARCKS effector domain (ED) peptides potently target all GBM molecular classes while sparing normal human astrocytes. Cell death mechanistic testing revealed that these peptides produce rapid cytotoxicity in GBM that overcomes caspase inhibition. Moreover, we identify a GBM-selective cytolytic death mechanism involving plasma membrane targeting and intracellular calcium accumulation. Despite limited relative partitioning to the brain, tail-vein peptide injection revealed tumor targeting in intracranially implanted GBM PDX. These results indicate that MARCKS ED peptide therapeutics may overcome traditional GBM resistance mechanisms, supporting further development of similar agents.
科研通智能强力驱动
Strongly Powered by AbleSci AI