Pan-Ras-In-1 triggers cell wall lysis to eradicate Staphylococcus aureus

Given the global crisis of antimicrobial resistance, the dual anticancer and antibacterial properties of certain agents have attracted increasing attention as a potential alternative to conventional antimicrobial approaches. In this study, we characterized the bactericidal activity of an anticancer molecule (Pan-Ras-In-1) against Staphylococcus aureus , a pathogen associated with refractory infection. In vitro assays revealed that Pan-Ras-In-1 has a more pronounced bactericidal effect on S. aureus cells than the traditional antibiotics vancomycin and levofloxacin. Furthermore, Pan-Ras-In-1 displayed potential therapeutic efficacy in vivo , as assessed using the murine systemic infection and skin abscess models, suggesting its potential for subsequent clinical applications. Exposure of S. aureus to Pan-Ras-In-1 activates CidA-associated peptidoglycan hydrolase systems, which partially mediate bacterial programmed cell death. Peptide-centric local stability analyses revealed that Pan-Ras-In-1 binds to TarA protein, suppressing wall teichoic acid polymer production. The combined action of two mechanisms enables Pan-Ras-In-1 to compromise bacterial cell wall integrity.

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Publication Details

Journal
iScience
Published
2026-08-28
DOI
https://doi.org/10.1016/j.isci.2026.117291
Primary Topic
Protein Kinase Regulation and GTPase Signaling
Type
article
Field-Weighted Citation Impact
0.00

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article

Pan-Ras-In-1 triggers cell wall lysis to eradicate Staphylococcus aureus

Yu Huang, Bingjie Wang, Yongpeng Shang, Weihua Han et al.
iScience
Protein Kinase Regulation and GTPase Signaling
article

Pan-Ras-In-1 triggers cell wall lysis to eradicate Staphylococcus aureus

Yu Huang, Bingjie Wang, Yongpeng Shang, Weihua Han, Rongrong Hu, Fangyou Yu, Yinjuan Guo, Li Shen, Xinru Yuan, Can Yang
article en

Abstract

Given the global crisis of antimicrobial resistance, the dual anticancer and antibacterial properties of certain agents have attracted increasing attention as a potential alternative to conventional antimicrobial approaches. In this study, we characterized the bactericidal activity of an anticancer molecule (Pan-Ras-In-1) against Staphylococcus aureus , a pathogen associated with refractory infection. In vitro assays revealed that Pan-Ras-In-1 has a more pronounced bactericidal effect on S. aureus cells than the traditional antibiotics vancomycin and levofloxacin. Furthermore, Pan-Ras-In-1 displayed potential therapeutic efficacy in vivo , as assessed using the murine systemic infection and skin abscess models, suggesting its potential for subsequent clinical applications. Exposure of S. aureus to Pan-Ras-In-1 activates CidA-associated peptidoglycan hydrolase systems, which partially mediate bacterial programmed cell death. Peptide-centric local stability analyses revealed that Pan-Ras-In-1 binds to TarA protein, suppressing wall teichoic acid polymer production. The combined action of two mechanisms enables Pan-Ras-In-1 to compromise bacterial cell wall integrity.

iScienceVol. 29(9)
Tongji University (CN), Shanghai Pulmonary Hospital (CN)
National Natural Science Foundation of China
Openalex Percentile: Top 46%
Protein Kinase Regulation and GTPase Signaling
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