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Research ArticleExperimental Studies

CX-4945 (Silmitasertib) Induces Cell Death by Impairing Lysosomal Utilization in KRAS Mutant Cholangiocarcinoma Cell Lines

DA SOL LEE, MIN WOO HAN, YONGHYUN KANG, CHORONG KIM, SEONMIN LEE, KYU-PYO KIM and CHANGHOON YOO
Anticancer Research May 2024, 44 (5) 1939-1946; DOI: https://doi.org/10.21873/anticanres.16996
DA SOL LEE
1Asan Institute for Life Sciences, Asan Medical Center, Seoul, Republic of Korea;
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MIN WOO HAN
2University of Ulsan College of Medicine, Seoul, Republic of Korea;
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YONGHYUN KANG
1Asan Institute for Life Sciences, Asan Medical Center, Seoul, Republic of Korea;
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CHORONG KIM
1Asan Institute for Life Sciences, Asan Medical Center, Seoul, Republic of Korea;
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SEONMIN LEE
3University of Ulsan Digestive Diseases Research Center, Seoul, Republic of Korea;
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KYU-PYO KIM
4Department of Oncology, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea
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CHANGHOON YOO
4Department of Oncology, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea
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  • For correspondence: yooc{at}amc.seoul.kr
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Abstract

Background/Aim: Macropinocytosis is a non-selective form of endocytosis that facilitates the uptake of extracellular substances, such as nutrients and macromolecules, into the cells. In KRAS-driven cancers, including pancreatic ductal adenocarcinoma, macropinocytosis and subsequent lysosomal utilization are known to be enhanced to overcome metabolic stress. In this study, we investigated the role of Casein Kinase 2 (CK2) inhibition in macropinocytosis and subsequent metabolic processes in KRAS mutant cholangiocarcinoma (CCA) cell lines. Materials and Methods: The bovine serum albumin (BSA) uptake indicating macropinocytosis was performed by flow cytometry using the HuCCT1 KRAS mutant CCA cell line. To validate macropinosome, the Rab7 and LAMP2 were labeled and analyzed via immunocytochemistry and western blot. The CX-4945 (Silmitasertib), CK2 inhibitor, was used to investigate the role of CK2 in macropinocytosis and subsequent lysosomal metabolism. Results: The TFK-1, a KRAS wild-type CCA cell line, showed only apoptotic morphological changes. However, the HuCCT1 cell line showed macropinocytosis. Although CX-4945 induced morphological changes accompanied by the accumulation of intracellular vacuoles and cell death, the level of macropinocytosis did not change. These intracellular vacuoles were identified as late macropinosomes, representing Rab7+ vesicles before fusion with lysosomes. In addition, CX-4945 suppressed LAMP2 expression following the inhibition of the Akt-mTOR signaling pathway, which interrupts mature macropinosome and lysosomal metabolic utilization. Conclusion: Macropinocytosis is used as an energy source in the KRAS mutant CCA cell line HuCCT1. The inhibition of CK2 by CX-4945 leads to cell death in HuCCT1 cells through alteration of the lysosome-dependent metabolism.

Key Words:
  • KRAS
  • macropinocytosis
  • cholangiocarcinoma
  • CK2 inhibitor
  • CX-4945
  • Received January 29, 2024.
  • Revision received February 27, 2024.
  • Accepted February 28, 2024.
  • Copyright © 2024 International Institute of Anticancer Research (Dr. George J. Delinasios), All rights reserved.
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Anticancer Research: 44 (5)
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CX-4945 (Silmitasertib) Induces Cell Death by Impairing Lysosomal Utilization in KRAS Mutant Cholangiocarcinoma Cell Lines
DA SOL LEE, MIN WOO HAN, YONGHYUN KANG, CHORONG KIM, SEONMIN LEE, KYU-PYO KIM, CHANGHOON YOO
Anticancer Research May 2024, 44 (5) 1939-1946; DOI: 10.21873/anticanres.16996

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CX-4945 (Silmitasertib) Induces Cell Death by Impairing Lysosomal Utilization in KRAS Mutant Cholangiocarcinoma Cell Lines
DA SOL LEE, MIN WOO HAN, YONGHYUN KANG, CHORONG KIM, SEONMIN LEE, KYU-PYO KIM, CHANGHOON YOO
Anticancer Research May 2024, 44 (5) 1939-1946; DOI: 10.21873/anticanres.16996
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Keywords

  • KRAS
  • macropinocytosis
  • cholangiocarcinoma
  • CK2 inhibitor
  • CX-4945
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