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Published on: May 6, 2015
Interaction Analysis of Adenovirus L5 Protein With Pancreatic Cancer Cell Surface Receptor to Analyze Its Affinity
Maryum Nisar1, Rehan Zafar Paracha1, Alvina Gul2
1Research Center for Modelling and Simulation (RCMS), National University of Sciences and Technology (NUST), Islamabad, Pakistan.
Abstract:
This study seeks to investigate the interaction profile of the L5 protein of oncolytic adenovirus with the overexpressed surface receptors of pancreatic cancer. This is an important area of research because pancreatic cancer is one of the most fatal malignancies with a very low patient survival rate. Multiple therapies to date to improve the survival rate are reported; however, they show a comparatively low success rate. Among them, oncolytic virus therapy is a type of immunotherapy that is currently under deliberation by researchers for multiple cancer types in various clinical trials. Talimogene laherparepvec (T-VEC) is the first oncolytic virus approved by the US Food and Drug Administration (FDA) for melanoma. The oncolytic virus not only kills cancer cells but also activates the anticancer immune response. Therefore, it is preferred over others to deal with aggressive pancreatic cancer. The efficacy of therapy primarily depends on how effectively the oncolytic virus enters and infects the cancer cell. Cell surface receptors and their interactions with virus coat proteins are a crucial step for oncolytic virus entry and a pivotal determinant. The L5 proteins of the virus coat are the first to interact with host cell surface receptors. Therefore, the objective of this study is to analyze the interaction profile of the L5 protein of oncolytic adenovirus with overexpressed surface receptors of pancreatic cancer. The L5 proteins of three adenovirus serotypes HAdV2, HAdV5, and HAdV3 were utilized in this study. Overexpressed pancreatic cancer receptors include SLC2A1, MET, IL1RAP, NPR3, GABRP, SLC6A6, and TMPRSS4. The protein structures of viral and cancer cell protein were docked using the High Ambiguity Driven protein-protein DOCKing (HADDOCK) server. The binding affinity and interaction profile of viral proteins against all the receptors were analyzed. Results suggest that the HAdV3 L5 protein shows better interaction as compared to HAdV2 and HAdV5 by elucidating high binding affinity with 4 receptors (NPR3, GABRP, SLC6A6, and TMPRSS4). The current study proposed that HAdV5 or HAdV2 virus pseudotyped with the L5 protein of HAdV3 can be able to effectively infect pancreatic cancer cells. Moreover, the current study surmises that the affinity maturation of HAdV3 L5 can enhance virus attachment with all the receptors of cancer cells.
Insights
Oncolytic adenovirus L5 proteins interact with pancreatic cancer receptors. HAdV3 L5 shows strong binding affinity, suggesting potential for improved pancreatic cancer therapy via engineered viruses.
Area of Science:
- Oncology
- Virology
- Immunotherapy
Background:
- Pancreatic cancer has a low survival rate, necessitating novel therapeutic strategies.
- Oncolytic virus therapy, a form of immunotherapy, shows promise for various cancers.
- Effective oncolytic virus therapy relies on efficient viral entry into cancer cells, determined by virus-host receptor interactions.
Purpose of the Study:
- To investigate the interaction profile of oncolytic adenovirus L5 proteins with overexpressed pancreatic cancer surface receptors.
- To identify specific adenovirus serotypes and their L5 proteins with high binding affinity to pancreatic cancer receptors.
Main Methods:
- Utilized L5 proteins from adenovirus serotypes HAdV2, HAdV5, and HAdV3.
- Analyzed interactions with overexpressed pancreatic cancer receptors: SLC2A1, MET, IL1RAP, NPR3, GABRP, SLC6A6, and TMPRSS4.
- Employed High Ambiguity Driven protein-protein DOCKing (HADDOCK) server for protein structure docking and binding affinity analysis.
Main Results:
- The HAdV3 L5 protein exhibited superior interaction compared to HAdV2 and HAdV5.
- HAdV3 L5 demonstrated high binding affinity with four pancreatic cancer receptors: NPR3, GABRP, SLC6A6, and TMPRSS4.
- Identified potential for engineering HAdV5 or HAdV2 viruses with HAdV3 L5 for enhanced pancreatic cancer cell infection.
Conclusions:
- HAdV3 L5 protein is a promising candidate for targeting pancreatic cancer cells.
- Pseudotyping HAdV5 or HAdV2 with HAdV3 L5 may enhance oncolytic virus efficacy against pancreatic cancer.
- Further affinity maturation of HAdV3 L5 could improve virus attachment to a broader range of pancreatic cancer cell receptors.
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