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Claudin-1 required for HCV virus entry has high potential for phosphorylation and O-glycosylation

HCV is a leading cause of hepatocellular carcinoma and cirrhosis all over the world. Claudins belong to family of tight junction's proteins that are responsible for establishing barriers for controlling the flow of molecules around cells. For therapeutic strategies, regulation of viral entry in...

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Autores principales: Ahmad, Waqar, Shabbiri, Khadija, Ijaz, Bushra, Asad, Sultan, Sarwar, Muhammad T, Gull, Sana, Kausar, Humera, Fouzia, Kiran, Shahid, Imran, Hassan, Sajida
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3115886/
https://www.ncbi.nlm.nih.gov/pubmed/21569618
http://dx.doi.org/10.1186/1743-422X-8-229
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author Ahmad, Waqar
Shabbiri, Khadija
Ijaz, Bushra
Asad, Sultan
Sarwar, Muhammad T
Gull, Sana
Kausar, Humera
Fouzia, Kiran
Shahid, Imran
Hassan, Sajida
author_facet Ahmad, Waqar
Shabbiri, Khadija
Ijaz, Bushra
Asad, Sultan
Sarwar, Muhammad T
Gull, Sana
Kausar, Humera
Fouzia, Kiran
Shahid, Imran
Hassan, Sajida
author_sort Ahmad, Waqar
collection PubMed
description HCV is a leading cause of hepatocellular carcinoma and cirrhosis all over the world. Claudins belong to family of tight junction's proteins that are responsible for establishing barriers for controlling the flow of molecules around cells. For therapeutic strategies, regulation of viral entry into the host cells holds a lot of promise. During HCV infection claudin-1 is highly expressed in liver and believed to be associated with HCV virus entry after HCV binding with or without co-receptor CD81. The claudin-1 assembly with tight junctions is regulated by post translational modifications. During claudins assembly and disassembly with tight junctions, phosphorylation is required at C-terminal tail. In cellular proteins, interplay between phosphorylation and O-β-GlcNAc modification is believed to be functional switch, but it is very difficult to monitor these functional and vibrant changes in vivo. Netphos 2.0 and Disphos 1.3 programs were used for potential phosphorylation; NetPhosK 1.0 and KinasePhos for kinase prediction; and YinOYang 1.2 and OGPET to predict possible O-glycosylation sites. We also identified Yin Yang sites that may have potential for O-β-GlcNAc and phosphorylation interplay at same Ser/Thr residues. We for the first time proposed that alternate phosphorylation and O-β-GlcNAc modification on Ser 192, Ser 205, Ser 206; and Thr 191 may provide an on/off switch to regulate assembly of claudin-1 at tight junctions. In addition these phosphorylation sites may be targeted by novel chemotherapeutic agents to prevent phosphorylation lead by HCV viral entry complex.
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spelling pubmed-31158862011-06-16 Claudin-1 required for HCV virus entry has high potential for phosphorylation and O-glycosylation Ahmad, Waqar Shabbiri, Khadija Ijaz, Bushra Asad, Sultan Sarwar, Muhammad T Gull, Sana Kausar, Humera Fouzia, Kiran Shahid, Imran Hassan, Sajida Virol J Research HCV is a leading cause of hepatocellular carcinoma and cirrhosis all over the world. Claudins belong to family of tight junction's proteins that are responsible for establishing barriers for controlling the flow of molecules around cells. For therapeutic strategies, regulation of viral entry into the host cells holds a lot of promise. During HCV infection claudin-1 is highly expressed in liver and believed to be associated with HCV virus entry after HCV binding with or without co-receptor CD81. The claudin-1 assembly with tight junctions is regulated by post translational modifications. During claudins assembly and disassembly with tight junctions, phosphorylation is required at C-terminal tail. In cellular proteins, interplay between phosphorylation and O-β-GlcNAc modification is believed to be functional switch, but it is very difficult to monitor these functional and vibrant changes in vivo. Netphos 2.0 and Disphos 1.3 programs were used for potential phosphorylation; NetPhosK 1.0 and KinasePhos for kinase prediction; and YinOYang 1.2 and OGPET to predict possible O-glycosylation sites. We also identified Yin Yang sites that may have potential for O-β-GlcNAc and phosphorylation interplay at same Ser/Thr residues. We for the first time proposed that alternate phosphorylation and O-β-GlcNAc modification on Ser 192, Ser 205, Ser 206; and Thr 191 may provide an on/off switch to regulate assembly of claudin-1 at tight junctions. In addition these phosphorylation sites may be targeted by novel chemotherapeutic agents to prevent phosphorylation lead by HCV viral entry complex. BioMed Central 2011-05-15 /pmc/articles/PMC3115886/ /pubmed/21569618 http://dx.doi.org/10.1186/1743-422X-8-229 Text en Copyright ©2011 Ahmad et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Ahmad, Waqar
Shabbiri, Khadija
Ijaz, Bushra
Asad, Sultan
Sarwar, Muhammad T
Gull, Sana
Kausar, Humera
Fouzia, Kiran
Shahid, Imran
Hassan, Sajida
Claudin-1 required for HCV virus entry has high potential for phosphorylation and O-glycosylation
title Claudin-1 required for HCV virus entry has high potential for phosphorylation and O-glycosylation
title_full Claudin-1 required for HCV virus entry has high potential for phosphorylation and O-glycosylation
title_fullStr Claudin-1 required for HCV virus entry has high potential for phosphorylation and O-glycosylation
title_full_unstemmed Claudin-1 required for HCV virus entry has high potential for phosphorylation and O-glycosylation
title_short Claudin-1 required for HCV virus entry has high potential for phosphorylation and O-glycosylation
title_sort claudin-1 required for hcv virus entry has high potential for phosphorylation and o-glycosylation
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3115886/
https://www.ncbi.nlm.nih.gov/pubmed/21569618
http://dx.doi.org/10.1186/1743-422X-8-229
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