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Purification of Viral DNA for the Identification of Associated Viral and Cellular Proteins
Published on: August 31, 2017
The SMC5/6 Complex Interacts with the Papillomavirus E2 Protein and Influences Maintenance of Viral Episomal DNA
Peris Bentley1, Min Jie Alvin Tan1, Alison A McBride2
1Department of Microbiology and Immunobiology, Harvard Medical School, Boston, Massachusetts, USA.
Abstract:
The papillomavirus E2 protein executes numerous essential functions related to viral transcription, replication of viral DNA, and viral genome maintenance. Because E2 lacks enzymatic activity, many of these functions are mediated by interactions with host cellular proteins. Unbiased proteomics approaches have successfully identified a number of E2-host protein interactions. We have extended such studies and have identified and validated the cellular proteins structural maintenance of chromosome 5 (SMC5) and SMC6 as interactors of the viral E2 protein. These two proteins make up the core components of the SMC5/6 complex. The SMC5/6 complex is a member of the conserved structural maintenance of chromosomes (SMC) family of proteins, which are essential for genome maintenance. We have examined the role of SMC5/6 in various E2 functions. Our data suggest that SMC6 is not required for E2-mediated transcriptional activation, E1/E2-mediated transient replication, or differentiation-dependent amplification of viral DNA. Our data, however, suggest a role for SMC5/6 in viral genome maintenance.IMPORTANCE The high-risk human papillomaviruses (HPVs) are the etiological cause of cervical cancer and the most common sexually transmitted infection. While the majority of infections may be asymptomatic or cause only benign lesions, persistent infection with the oncogenic high-risk HPV types may lead to serious diseases, such as cervical cancer, anogenital carcinoma, or head and neck oropharyngeal squamous cell carcinoma. The identification of virus-host protein interactions provides insights into the mechanisms of viral DNA persistence, viral genome replication, and cellular transformation. Elucidating the mechanism of early events in the virus replication cycle as well as of integration of viral DNA into host chromatin may present novel antiviral strategies and targets for counteracting persistent infection. The E2 protein is an important viral regulatory protein whose functions are mediated through interactions with host cell proteins. Here we explore the interaction of E2 with SMC5/6 and the functional consequences.
Insights
Human papillomavirus (HPV) E2 protein interacts with the host SMC5/6 complex. This interaction is crucial for maintaining viral genome stability, offering potential new antiviral targets against HPV infections and related cancers.
Area of Science:
- Virology
- Molecular Biology
- Cancer Research
Background:
- Human papillomaviruses (HPVs) are linked to cervical and other cancers.
- The viral E2 protein regulates viral transcription, replication, and genome maintenance.
- E2 protein functions rely on interactions with host cellular proteins.
Purpose of the Study:
- To identify and validate host cellular proteins interacting with the HPV E2 protein.
- To investigate the functional role of identified host proteins in HPV lifecycle and genome maintenance.
Main Methods:
- Proteomics approaches to identify E2-host protein interactions.
- Validation of identified interactions.
- Functional assays to assess the role of SMC5/6 in E2-mediated functions.
Main Results:
- Structural maintenance of chromosome 5 (SMC5) and SMC6 proteins were identified as HPV E2 interactors.
- The SMC5/6 complex, core components of genome maintenance proteins, interacts with E2.
- SMC6 is not essential for E2-mediated transcription, replication, or DNA amplification.
- SMC5/6 complex plays a role in viral genome maintenance.
Conclusions:
- The SMC5/6 complex is a novel interactor of the HPV E2 protein.
- SMC5/6 is implicated in the crucial function of viral genome maintenance.
- Understanding E2-SMC5/6 interactions may lead to new antiviral strategies against persistent HPV infections and associated cancers.
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