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Updated: Aug 27, 2025

A Comparative Approach to Characterize the Landscape of Host-Pathogen Protein-Protein Interactions
Published on: July 18, 2013
Novel effect of the high risk-HPV E7 CKII phospho-acceptor site on polarity protein expression
María Paula Dizanzo1, Marina Bugnon Valdano1, Om Basukala2
1Instituto de Biología Molecular Y Celular de Rosario-CONICET, Facultad de Ciencias Bioquímicas Y Farmacéuticas, Universidad Nacional de Rosario, Suipacha 590. 2000, Rosario, Argentina.
Background:
Oncogenic Human Papillomaviruses (HPVs) base their transforming potential on the action of both E6 and E7 viral oncoproteins, which perform cooperative or antagonistic actions and thus interfere with a variety of relevant cellular targets. Among them, the expression of some PDZ-containing polarity proteins, as DLG1 and hScrib, is altered during the HPV life cycle and the consequent malignant transformation. Together with the well-established interference of E6 with PDZ proteins, we have recently shown that E7 viral oncoprotein is also responsible for the changes in abundance and localization of DLG1 observed in HPV-associated lesions. Given that the mechanisms involved remained only partially understood, we here thoroughly analyse the contribution of a crucial E7 post-translational modification: its CKII-dependent phosphorylation. Moreover, we extended our studies to hScrib, in order to investigate possible conserved regulatory events among diverse PDZ targets of HPV.
Methods:
We have acutely analysed the expression of DLG1 and hScrib in restrictive conditions for E7 phosphorylation by CKII in epithelial culture cells by western blot and confocal fluorescence microscopy. We made use of genome-edited HPV-positive cells, specific inhibitors of CKII activity and transient expression of the viral oncoproteins, including a mutant version of E7.
Results:
We here demonstrate that the functional phosphorylation of E7 oncoprotein by the CKII cellular kinase, a key regulatory event for its activities, is also crucial to counteract the E6-mediated degradation of the PDZ-polarity protein DLG1 and to promote its subcellular redistribution. Moreover, we show that the CKII-dependent phosphorylation of E7 is able to control the expression of another PDZ target of HPV: hScrib. Remarkably, we found this is a shared feature among different oncogenic HPV types, suggesting a common path towards viral pathogenesis.
Conclusions:
The present study sheds light into the mechanisms behind the misexpression of PDZ-polarity proteins during HPV infections. Our findings stress the relevance of the CKII-mediated regulation of E7 activities, providing novel insights into the joint action of HPV oncoproteins and further indicating a conserved and most likely crucial mechanism during the viral life cycle and the associated transformation.
Insights
Human Papillomavirus (HPV) oncoproteins E6 and E7 disrupt cell polarity proteins like DLG1 and hScrib. E7
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Oncogenic Human Papillomaviruses (HPVs) utilize E6 and E7 oncoproteins to disrupt cellular functions.
- Alterations in PDZ-containing polarity proteins, such as DLG1 and hScrib, are observed during HPV infection and malignant transformation.
- While E6's interaction with PDZ proteins is known, E7's role in DLG1's altered expression and localization in HPV lesions was recently identified.
Purpose of the Study:
- To investigate the role of E7 oncoprotein's CKII-dependent phosphorylation in regulating PDZ-containing polarity proteins.
- To analyze the impact of E7 phosphorylation on DLG1 expression and localization.
- To extend the investigation to hScrib to identify conserved regulatory mechanisms among HPV PDZ targets.
Main Methods:
- Analysis of DLG1 and hScrib expression in epithelial cells under conditions restricting E7 phosphorylation by CKII.
- Utilized western blot and confocal fluorescence microscopy.
- Employed genome-edited HPV-positive cells, CKII inhibitors, and transient expression of wild-type and mutant E7 oncoproteins.
Main Results:
- CKII-dependent phosphorylation of the E7 oncoprotein is essential for counteracting E6-mediated degradation of DLG1 and promoting its subcellular redistribution.
- CKII-mediated phosphorylation of E7 also regulates the expression of hScrib, another PDZ target of HPV.
- These regulatory events are conserved across different oncogenic HPV types, suggesting a common pathogenic mechanism.
Conclusions:
- The study elucidates the mechanisms underlying the misexpression of PDZ-polarity proteins in HPV infections.
- Highlights the significance of CKII-mediated regulation of E7 activities.
- Provides new insights into the synergistic action of HPV oncoproteins and a conserved mechanism crucial for viral pathogenesis and transformation.
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