p120 catenin recruits HPV to γ-secretase to promote virus infection.
During internalization and trafficking, human papillomavirus (HPV) moves from the cell surface to the endosome where the transmembrane protease γ-secretase promotes insertion of the viral L2 capsid protein into the endosome membrane. Protrusion of L2 through the endosome membrane into the cytosol al...
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2020-10-01
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Series: | PLoS Pathogens |
Online Access: | https://doi.org/10.1371/journal.ppat.1008946 |
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doaj-cb5e683e26f2456a95b50f81d48c1a172021-04-21T17:52:38ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742020-10-011610e100894610.1371/journal.ppat.1008946p120 catenin recruits HPV to γ-secretase to promote virus infection.Mara Calypso HarwoodAllison Jade DupzykTakamasa InoueDaniel DiMaioBilly TsaiDuring internalization and trafficking, human papillomavirus (HPV) moves from the cell surface to the endosome where the transmembrane protease γ-secretase promotes insertion of the viral L2 capsid protein into the endosome membrane. Protrusion of L2 through the endosome membrane into the cytosol allows the recruitment of cytosolic host factors that target the virus to the Golgi en route for productive infection. How endosome-localized HPV is delivered to γ-secretase, a decisive infection step, is unclear. Here we demonstrate that cytosolic p120 catenin, likely via an unidentified transmembrane protein, interacts with HPV at early time-points during viral internalization and trafficking. In the endosome, p120 is not required for low pH-dependent disassembly of the HPV L1 capsid protein from the incoming virion. Rather, p120 is required for HPV to interact with γ-secretase-an interaction that ensures the virus is transported along a productive route. Our findings clarify an enigmatic HPV infection step and provide critical insights into HPV infection that may lead to new therapeutic strategies against HPV-induced diseases.https://doi.org/10.1371/journal.ppat.1008946 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mara Calypso Harwood Allison Jade Dupzyk Takamasa Inoue Daniel DiMaio Billy Tsai |
spellingShingle |
Mara Calypso Harwood Allison Jade Dupzyk Takamasa Inoue Daniel DiMaio Billy Tsai p120 catenin recruits HPV to γ-secretase to promote virus infection. PLoS Pathogens |
author_facet |
Mara Calypso Harwood Allison Jade Dupzyk Takamasa Inoue Daniel DiMaio Billy Tsai |
author_sort |
Mara Calypso Harwood |
title |
p120 catenin recruits HPV to γ-secretase to promote virus infection. |
title_short |
p120 catenin recruits HPV to γ-secretase to promote virus infection. |
title_full |
p120 catenin recruits HPV to γ-secretase to promote virus infection. |
title_fullStr |
p120 catenin recruits HPV to γ-secretase to promote virus infection. |
title_full_unstemmed |
p120 catenin recruits HPV to γ-secretase to promote virus infection. |
title_sort |
p120 catenin recruits hpv to γ-secretase to promote virus infection. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Pathogens |
issn |
1553-7366 1553-7374 |
publishDate |
2020-10-01 |
description |
During internalization and trafficking, human papillomavirus (HPV) moves from the cell surface to the endosome where the transmembrane protease γ-secretase promotes insertion of the viral L2 capsid protein into the endosome membrane. Protrusion of L2 through the endosome membrane into the cytosol allows the recruitment of cytosolic host factors that target the virus to the Golgi en route for productive infection. How endosome-localized HPV is delivered to γ-secretase, a decisive infection step, is unclear. Here we demonstrate that cytosolic p120 catenin, likely via an unidentified transmembrane protein, interacts with HPV at early time-points during viral internalization and trafficking. In the endosome, p120 is not required for low pH-dependent disassembly of the HPV L1 capsid protein from the incoming virion. Rather, p120 is required for HPV to interact with γ-secretase-an interaction that ensures the virus is transported along a productive route. Our findings clarify an enigmatic HPV infection step and provide critical insights into HPV infection that may lead to new therapeutic strategies against HPV-induced diseases. |
url |
https://doi.org/10.1371/journal.ppat.1008946 |
work_keys_str_mv |
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1714665631105679360 |