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A Comparative Approach to Characterize the Landscape of Host-Pathogen Protein-Protein Interactions
Published on: July 18, 2013
Multiple Routes to Oncogenesis Are Promoted by the Human Papillomavirus-Host Protein Network
Manon Eckhardt1,2,3, Wei Zhang4, Andrew M Gross4
1Quantitative Biosciences Institute (QBI), UCSF, San Francisco, California.
Abstract:
We have mapped a global network of virus-host protein interactions by purification of the complete set of human papillomavirus (HPV) proteins in multiple cell lines followed by mass spectrometry analysis. Integration of this map with tumor genome atlases shows that the virus targets human proteins frequently mutated in HPV- but not HPV+ cancers, providing a unique opportunity to identify novel oncogenic events phenocopied by HPV infection. For example, we find that the NRF2 transcriptional pathway, which protects against oxidative stress, is activated by interaction of the NRF2 regulator KEAP1 with the viral protein E1. We also demonstrate that the L2 HPV protein physically interacts with the RNF20/40 histone ubiquitination complex and promotes tumor cell invasion in an RNF20/40-dependent manner. This combined proteomic and genetic approach provides a systematic means to study the cellular mechanisms hijacked by virally induced cancers.Significance: In this study, we created a protein-protein interaction network between HPV and human proteins. An integrative analysis of this network and 800 tumor mutation profiles identifies multiple oncogenesis pathways promoted by HPV interactions that phenocopy recurrent mutations in cancer, yielding an expanded definition of HPV oncogenic roles. Cancer Discov; 8(11); 1474-89. ©2018 AACR. This article is highlighted in the In This Issue feature, p. 1333.
Insights
Human papillomavirus (HPV) infection hijacks host cell pathways, creating a protein interaction network that drives cancer. This study reveals novel oncogenic roles for HPV by linking viral proteins to cancer-driving mutations.
Area of Science:
- Virology
- Oncology
- Proteomics
Background:
- Human papillomavirus (HPV) is a major cause of cervical and other cancers.
- Understanding virus-host interactions is crucial for cancer prevention and treatment.
Purpose of the Study:
- To map the global network of virus-host protein interactions for HPV.
- To identify novel oncogenic pathways hijacked by HPV infection.
- To integrate proteomic data with tumor genome atlases.
Main Methods:
- Purification of all human papillomavirus (HPV) proteins.
- Mass spectrometry analysis to identify protein-protein interactions.
- Integration with tumor genome atlases and mutation profiles.
Main Results:
- A comprehensive map of HPV-host protein interactions was generated.
- HPV targets human proteins frequently mutated in HPV-negative cancers.
- Activation of the NRF2 pathway by HPV E1 protein and KEAP1 interaction.
- HPV L2 protein interaction with RNF20/40 histone ubiquitination complex promotes tumor invasion.
Conclusions:
- HPV infection activates specific host cell pathways, contributing to oncogenesis.
- This study expands the definition of HPV's oncogenic roles.
- The findings provide a systematic approach to study virally induced cancers.
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