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Mutant kras as a biomarker plays a favorable role in fl118-induced apoptosis, reactive oxygen species (Ros) production and modulation of survivin, mcl-1 and xiap in human bladder cancer

  • Sreevidya Santha
  • , Xiang Ling
  • , Ieman A.M. Aljahdali
  • , Sailee S. Rasam
  • , Xue Wang
  • , Jianqun Liao
  • , Jue Wang
  • , Christos Fountzilas
  • , Qingyong Li
  • , Jun Qu
  • , Fengzhi Li
  • Roswell Park Cancer Institute
  • Canget BioTekpharma LLC
  • SUNY Buffalo
  • University of Arizona
  • Zhejiang University of Technology

Research output: Contribution to journalArticlepeer-review

19 Scopus citations

Abstract

Tumor heterogeneity in key gene mutations in bladder cancer (BC) is a major hurdle for the development of effective treatments. Using molecular, cellular, proteomics and animal models, we demonstrated that FL118, an innovative small molecule, is highly effective at killing T24 and UMUC3 high-grade BC cells, which have Hras and Kras mutations, respectively. In contrast, HT1376 BC cells with wild-type Ras are insensitive to FL118. This concept was further demonstrated in additional BC and colorectal cancer cells with mutant Kras versus those with wild-type Kras. FL118 strongly induced PARP cleavage (apoptosis hallmark) and inhibited survivin, XIAP and/or Mcl-1 in both T24 and UMUC3 cells, but not in the HT1376 cells. Silencing mutant Kras reduced both FL118-induced PARP cleavage and downregulation of survivin, XIAP and Mcl-1 in UMUC3 cells, suggesting mutant Kras is required for FL118 to exhibit higher anticancer efficacy. FL118 increased reactive oxygen species (ROS) production in T24 and UMUC3 cells, but not in HT1376 cells. Silencing mutant Kras in UMUC3 cells reduced FL118-mediated ROS generation. Proteomics analysis revealed that a profound and opposing Kras-relevant signaling protein is changed in UMUC3 cells and not in HT1376 cells. Consistently, in vivo studies indicated that UMUC3 tumors are highly sensitive to FL118 treatment, while HT1376 tumors are highly resistant to this agent. Silencing mutant Kras in UMUC3 cell-derived tumors decreases UMUC3 tumor sensitivity to FL118 treatment. Together, our studies revealed that mutant Kras is a favorable biomarker for FL118 targeted treatment.

Original languageEnglish
Article number3413
Pages (from-to)1-25
Number of pages25
JournalCancers
Volume12
Issue number11
DOIs
StatePublished - Nov 2020

Keywords

  • Apoptosis
  • Bladder cancer
  • FL118
  • Human bladder tumor mouse models
  • Mcl-1
  • Mutant Kras
  • Proteomics analysis
  • Reactive oxygen species (ROS)
  • Survivin
  • XIAP

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