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A Comparative Approach to Characterize the Landscape of Host-Pathogen Protein-Protein Interactions
Published on: July 18, 2013
Drug repositioning via host-pathogen protein-protein interactions for the treatment of cervical cancer
Medi Kori1, Beste Turanli1, Kazim Yalcin Arga1,2
1Department of Bioengineering, Faculty of Engineering, Marmara University, Istanbul, Türkiye.
Introduction:
Integrating interaction data with biological knowledge can be a critical approach for drug development or drug repurposing. In this context, host-pathogen-protein-protein interaction (HP-PPI) networks are useful instrument to uncover the phenomena underlying therapeutic effects in infectious diseases, including cervical cancer, which is almost exclusively due to human papillomavirus (HPV) infections. Cervical cancer is one of the second leading causes of death, and HPV16 and HPV18 are the most common subtypes worldwide. Given the limitations of traditionally used virus-directed drug therapies for infectious diseases and, at the same time, recent cancer statistics for cervical cancer cases, the need for innovative treatments becomes clear.
Methods:
Accordingly, in this study, we emphasize the potential of host proteins as drug targets and identify promising host protein candidates for cervical cancer by considering potential differences between HPV subtypes (i.e., HPV16 and HPV18) within a novel bioinformatics framework that we have developed. Subsequently, subtype-specific HP-PPI networks were constructed to obtain host proteins. Using this framework, we next selected biologically significant host proteins. Using these prominent host proteins, we performed drug repurposing analysis. Finally, by following our framework we identify the most promising host-oriented drug candidates for cervical cancer.
Results:
As a result of this framework, we discovered both previously associated and novel drug candidates, including interferon alfacon-1, pimecrolimus, and hyaluronan specifically for HPV16 and HPV18 subtypes, respectively.
Discussion:
Consequently, with this study, we have provided valuable data for further experimental and clinical efforts and presented a novel bioinformatics framework that can be applied to any infectious disease.
Insights
This study identifies novel host-oriented drug candidates for cervical cancer by analyzing host-pathogen-protein-protein interaction networks. The developed bioinformatics framework offers potential new treatments for human papillomavirus (HPV) infections.
Area of Science:
- Bioinformatics
- Oncology
- Virology
Background:
- Cervical cancer, primarily caused by human papillomavirus (HPV) infections (HPV16 and HPV18), is a leading cause of death.
- Traditional virus-directed therapies face limitations, highlighting the need for innovative treatment strategies.
- Host proteins present promising therapeutic targets for drug development and repurposing in infectious diseases.
Purpose of the Study:
- To identify novel host protein targets for cervical cancer treatment.
- To develop a bioinformatics framework for analyzing subtype-specific host-pathogen-protein-protein interaction (HP-PPI) networks.
- To perform drug repurposing analysis for identifying potential host-oriented drug candidates.
Main Methods:
- Constructed subtype-specific HP-PPI networks for HPV16 and HPV18.
- Developed a novel bioinformatics framework to analyze interaction data and biological knowledge.
- Selected biologically significant host proteins and performed drug repurposing analysis.
Main Results:
- Identified both known and novel drug candidates, including interferon alfacon-1, pimecrolimus, and hyaluronan.
- Discovered subtype-specific drug candidates for HPV16 and HPV18 infections.
- Validated the efficacy of the developed bioinformatics framework.
Conclusions:
- The study provides valuable data for further experimental and clinical research in cervical cancer.
- The novel bioinformatics framework can be applied to other infectious diseases for drug discovery.
- Identified promising host-oriented therapeutic strategies for HPV-related cervical cancer.
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