Identification of a novel GSK3β inhibitor involved in abrogating KRas dependent pancreatic tumors in Wnt/beta-catenin and NF-kB dependent manner

胰腺癌 克拉斯 葛兰素史克-3 Wnt信号通路 连环素 GSK3B公司 癌症研究 细胞凋亡 癌症 医学 恶性肿瘤 生物 内科学 结直肠癌 信号转导 生物化学
作者
Mir Owais Ayaz,Aadil Qadir Bhat,Zaheen Akhter,Neetu Badsera,Md Mehedi Hossain,Farheen Showket,Sabra Parveen,Mohmmad Saleem Dar,Harshita Tiwari,Nedhi Kumari,Mahir Bhardwaj,Razak Hussain,Ashutosh Sharma,Mukesh Kumar,Umed Singh,Amit Nargorta,Aravind Kshatri,Utpal Nandi,Satdarshan P. Monga,P. Ramajayan
出处
期刊:Life Sciences [Elsevier BV]
卷期号:351: 122840-122840
标识
DOI:10.1016/j.lfs.2024.122840
摘要

Pancreatic cancer is an aggressive malignancy with a poor survival rate because it is difficult to diagnose the disease during its early stages. The currently available treatments, which include surgery, chemotherapy and radiation therapy, offer only limited survival benefit. Pharmacological interventions to inhibit Glycogen Synthase Kinase-3beta (GSK3β) activity is an important therapeutic strategy for the treatment of pancreatic cancer because GSK3β is one of the key factors involved in the onset, progression as well as in the acquisition of chemoresistance in pancreatic cancer. Here, we report the identification of MJ34 as a potent GSK3β inhibitor that significantly reduced growth and survival of human mutant KRas dependent pancreatic tumors. MJ34 mediated GSK3β inhibition was seen to induce apoptosis in a β-catenin dependent manner and downregulate NF-kB activity in MiaPaCa-2 cells thereby impeding cell survival and anti-apoptotic processes in these cells as well as in the xenograft model of pancreatic cancer. In vivo acute toxicity and in vitro cardiotoxicity studies indicate that MJ34 is well tolerated without any adverse effects. Taken together, we report the discovery of MJ34 as a potential drug candidate for the therapeutic treatment of mutant KRas-dependent human cancers through pharmacological inhibition of GSK3β.
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