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Published on: July 23, 2010
Inhibition of human papillomavirus type 16 E7 phosphorylation by the S100 MRP-8/14 protein complex
Sharof Tugizov1, Jennifer Berline, Rossana Herrera
1Department of Medicine, University of California, San Francisco, 513 Parnassus Ave., San Francisco, CA 94143, USA. tugizov@itsa.ucsf.edu
Abstract:
The human papillomavirus type 16 (HPV16) E7 is a major viral oncoprotein that is phosphorylated by casein kinase II (CKII). Two S100 family calcium-binding proteins, macrophage inhibitory-related factor protein 8 (MRP-8) and MRP-14, form a protein complex, MRP-8/14, that inactivates CKII. The MRP-8/14 protein complex may inhibit CKII-mediated E7 phosphorylation and therefore may alter its interaction with cellular ligands and reduce E7 oncogenic activity. We examined the inhibitory effect of the MRP-8/14 complex on CKII activity and HPV16 E7 phosphorylation. We have shown that CKII activity and HPV16 E7 phosphorylation were inhibited by uptake of exogenous MRP-8/14 and activation of endogenous MRP-8/14. MRP-8/14-mediated inhibition of E7 phosphorylation occurred at the G1 phase of the cell cycle. Analysis of MRP expression in primary keratinocytes and in HPV16- and 18-transformed cervical and foreskin epithelial cell lines showed that expression of MRP-8, MRP-14, and the MRP-8/14 complex was detected only in primary untransformed keratinocytes and not in the HPV-infected immortalized epithelial cells. CKII activity in HPV-immortalized keratinocytes was approximately fourfold higher than in HPV-negative primary keratinocytes. Treatment of HPV-positive immortalized epithelial cells with exogenous MRP-8/14 resulted in E7 hypophosphorylation and complete inhibition of cell growth within 2 weeks, compared with HPV-negative primary and immortalized HPV-negative cervical epithelial cells, which showed 25 and 40% growth inhibition, respectively. Together these results suggests that the MRP-8/14 protein complex in HPV-infected epithelial cells may play an important role in regulation of CKII-mediated E7 phosphorylation and inhibition of its oncogenic activity.
Insights
The MRP-8/14 protein complex inhibits casein kinase II (CKII) and human papillomavirus type 16 (HPV16) E7 phosphorylation. This complex may suppress E7 oncogenic activity and halt HPV-infected cell growth.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- Human papillomavirus type 16 (HPV16) E7 oncoprotein is phosphorylated by casein kinase II (CKII).
- S100 calcium-binding proteins, macrophage inhibitory-related factor protein 8 (MRP-8) and MRP-14, form a complex (MRP-8/14).
- The MRP-8/14 complex inactivates CKII, potentially inhibiting E7 phosphorylation and oncogenic activity.
Purpose of the Study:
- To investigate the inhibitory effect of the MRP-8/14 complex on CKII activity and HPV16 E7 phosphorylation.
- To analyze MRP expression in keratinocytes and HPV-infected cell lines.
- To assess the impact of MRP-8/14 on cell growth.
Main Methods:
- Examined CKII activity and HPV16 E7 phosphorylation following exogenous MRP-8/14 uptake and endogenous MRP-8/14 activation.
- Analyzed MRP-8, MRP-14, and MRP-8/14 complex expression in primary and HPV-infected epithelial cells.
- Assessed cell growth inhibition in response to MRP-8/14 treatment.
Main Results:
- CKII activity and HPV16 E7 phosphorylation were inhibited by MRP-8/14, occurring during the G1 cell cycle phase.
- MRP-8/14 complex expression was detected in primary keratinocytes but absent in HPV-infected cells.
- HPV-immortalized cells exhibited higher CKII activity than primary cells; MRP-8/14 treatment inhibited growth of HPV-positive cells.
Conclusions:
- The MRP-8/14 protein complex inhibits CKII-mediated phosphorylation of HPV16 E7.
- Loss of MRP-8/14 expression correlates with HPV-induced immortalization and increased CKII activity.
- MRP-8/14 complex plays a role in regulating E7 oncogenic activity and inhibiting HPV-infected cell proliferation.
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