Inhibitor of the Nuclear Transport Protein XPO1 Enhances the Anticancer Efficacy of KRAS G12C Inhibitors in Preclinical Models of KRAS G12C-Mutant Cancers

التفاصيل البيبلوغرافية
العنوان: Inhibitor of the Nuclear Transport Protein XPO1 Enhances the Anticancer Efficacy of KRAS G12C Inhibitors in Preclinical Models of KRAS G12C-Mutant Cancers
المؤلفون: Husain Yar Khan, Misako Nagasaka, Yiwei Li, Amro Aboukameel, Md. Hafiz Uddin, Rachel Sexton, Sahar Bannoura, Yousef Mzannar, Mohammed Najeeb Al-Hallak, Steve Kim, Rafic Beydoun, Yosef Landesman, Hirva Mamdani, Dipesh Uprety, Philip A. Philip, Ramzi M. Mohammad, Anthony F. Shields, Asfar S. Azmi
المصدر: Cancer Res Commun
سنة النشر: 2022
مصطلحات موضوعية: endocrine system diseases, neoplasms, digestive system diseases, Article, respiratory tract diseases
الوصف: The identification of molecules that can bind covalently to KRAS G12C and lock it in an inactive GDP-bound conformation has opened the door to targeting KRAS G12C selectively. These agents have shown promise in preclinical tumor models and clinical trials. FDA has recently granted approval to sotorasib for KRAS G12C–mutated non–small cell lung cancer (NSCLC). However, patients receiving these agents as monotherapy generally develop drug resistance over time. This necessitates the development of multi-targeted approaches that can potentially sensitize tumors to KRAS inhibitors. We generated KRAS G12C inhibitor–resistant cell lines and observed that they exhibit sensitivity toward selinexor, a selective inhibitor of nuclear export protein exportin 1 (XPO1), as a single agent. KRAS G12C inhibitors in combination with selinexor suppressed the proliferation of KRAS G12C–mutant cancer cell lines in a synergistic manner. Moreover, combined treatment of selinexor with KRAS G12C inhibitors resulted in enhanced spheroid disintegration, reduction in the number and size of colonies formed by G12C-mutant cancer cells. Mechanistically, the combination of selinexor with KRAS G12C inhibitors suppressed cell growth signaling and downregulated the expression of cell-cycle markers, KRAS and NF-κB as well as increased nuclear accumulation of tumor suppressor protein Rb. In an in vivo KRAS G12C cell-derived xenograft model, oral administration of a combination of selinexor and sotorasib was demonstrated to reduce tumor burden and enhance survival. In conclusion, we have shown that the nuclear transport protein XPO1 inhibitor can enhance the anticancer activity of KRAS G12C inhibitors in preclinical cancer models. Significance: In this study, combining nuclear transport inhibitor selinexor with KRAS G12C inhibitors has resulted in potent antitumor effects in preclinical cancer models. This can be an effective combination therapy for patients with cancer that do not respond or develop resistance to KRAS G12C inhibitor treatment.
تدمد: 2767-9764
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::fe9c14efed5348f093f2a93a3601a87b
https://pubmed.ncbi.nlm.nih.gov/35573474
Rights: OPEN
رقم الانضمام: edsair.doi.dedup.....fe9c14efed5348f093f2a93a3601a87b
قاعدة البيانات: OpenAIRE