The molecular mechanism underlying KRAS regulation on STK31 expression in pancreatic ductal adenocarcinoma

Author:

Liu Yuting12ORCID,Tang Shing Chun1,Li Chi Han1,To Ka Fai3,Li Bo24,Chan Stephen Lam5,Wong Chi Hin16,Chen Yangchao16ORCID

Affiliation:

1. School of Biomedical Sciences, Faculty of Medicine The Chinese University of Hong Kong Hong Kong China

2. Guangdong‐Hong Kong‐Macau University Joint Laboratory of Digestive Cancer Research, The Seventh Affiliated Hospital, Sun Yat‐Sen University Shenzhen China

3. Department of Anatomical and Cellular Pathology, Prince of Wales Hospital The Chinese University of Hong Kong Hong Kong China

4. Guangdong Provincial Key Laboratory of Digestive Cancer Research, Scientific Research Center, The Seventh Affiliated Hospital Sun Yat‐Sen University Shenzhen China

5. Department of Clinical Oncology, Prince of Wales Hospital The Chinese University of Hong Kong Hong Kong China

6. Shenzhen Research Institute, The Chinese University of Hong Kong Shenzhen China

Abstract

AbstractKRAS gene mutations are common in pancreatic ductal adenocarcinoma (PDAC), but targeting mutant KRAS is still challenging. Here, an endoribonuclease‐prepared small interfering RNA (esiRNA) library was used to screen new kinases that play critical roles in PDAC driven by KRAS gene mutations, and serine/threonine kinase 31 (STK31) was identified and characterized as a potential therapeutic target for KRAS‐mutant PDAC. Our results showed that STK31 was upregulated in KRAS‐mutant PDAC patients with poor survival and highly expressed in PDAC cell lines with KRASG12D mutation. Inhibition of STK31 in KRAS‐mutant cell lines significantly reduced PDAC cell growth in vitro and hindered tumor growth in vivo. Gain and loss of function experiments revealed that STK31 is a downstream target of KRAS in PDAC. A pharmacological inhibition assay showed MAPK/ERK signaling involved in STK31 regulation. The further mechanistic study validated that c‐Jun, regulated by KRAS/MAPK signaling, directly modulates the transcription level of STK31 by binding to its promoter region. Through RNA sequencing, we found that the cell cycle regulators CCNB1 and CDC25C are downstream targets of STK31. Taken together, our results indicate that STK31, which is the downstream target of the KRAS/MAPK/ERK/c‐Jun signaling pathway in KRAS‐mutant PDAC, promotes PDAC cell growth by modulating the expression of the cell cycle regulators CCNB1 and CDC25C.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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