Cargando…

The Nuclear Inclusion a (NIa) Protease of Turnip Mosaic Virus (TuMV) Cleaves Amyloid-β

BACKGROUND: The nuclear inclusion a (NIa) protease of turnip mosaic virus (TuMV) is responsible for the processing of the viral polyprotein into functional proteins. NIa was previously shown to possess a relatively strict substrate specificity with a preference for Val-Xaa-His-Gln↓, with the scissil...

Descripción completa

Detalles Bibliográficos
Autores principales: Han, Hye-Eun, Sellamuthu, Saravanan, Shin, Bae Hyun, Lee, Yong Jae, Song, Sungmin, Seo, Ji-Seon, Baek, In-Sun, Bae, Jeomil, Kim, Hannah, Yoo, Yung Joon, Jung, Yong-Keun, Song, Woo Keun, Han, Pyung-Lim, Park, Woo Jin
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3004936/
https://www.ncbi.nlm.nih.gov/pubmed/21187975
http://dx.doi.org/10.1371/journal.pone.0015645
_version_ 1782194058675879936
author Han, Hye-Eun
Sellamuthu, Saravanan
Shin, Bae Hyun
Lee, Yong Jae
Song, Sungmin
Seo, Ji-Seon
Baek, In-Sun
Bae, Jeomil
Kim, Hannah
Yoo, Yung Joon
Jung, Yong-Keun
Song, Woo Keun
Han, Pyung-Lim
Park, Woo Jin
author_facet Han, Hye-Eun
Sellamuthu, Saravanan
Shin, Bae Hyun
Lee, Yong Jae
Song, Sungmin
Seo, Ji-Seon
Baek, In-Sun
Bae, Jeomil
Kim, Hannah
Yoo, Yung Joon
Jung, Yong-Keun
Song, Woo Keun
Han, Pyung-Lim
Park, Woo Jin
author_sort Han, Hye-Eun
collection PubMed
description BACKGROUND: The nuclear inclusion a (NIa) protease of turnip mosaic virus (TuMV) is responsible for the processing of the viral polyprotein into functional proteins. NIa was previously shown to possess a relatively strict substrate specificity with a preference for Val-Xaa-His-Gln↓, with the scissile bond located after Gln. The presence of the same consensus sequence, Val(12)-His-His-Gln(15), near the presumptive α-secretase cleavage site of the amyloid-β (Aβ) peptide led us to hypothesize that NIa could possess activity against Aβ. METHODOLOGY/PRINCIPAL FINDINGS: Western blotting results showed that oligomeric as well as monomeric forms of Aβ can be degraded by NIa in vitro. The specific cleavage of Aβ was further confirmed by mass spectrometry analysis. NIa was shown to exist predominantly in the cytoplasm as observed by immunofluorescence microscopy. The overexpression of NIa in B103 neuroblastoma cells resulted in a significant reduction in cell death caused by both intracellularly generated and exogenously added Aβ. Moreover, lentiviral-mediated expression of NIa in APP(sw)/PS1 transgenic mice significantly reduced the levels of Aβ and plaques in the brain. CONCLUSIONS/SIGNIFICANCE: These results indicate that the degradation of Aβ in the cytoplasm could be a novel strategy to control the levels of Aβ, plaque formation, and the associated cell death.
format Text
id pubmed-3004936
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-30049362010-12-27 The Nuclear Inclusion a (NIa) Protease of Turnip Mosaic Virus (TuMV) Cleaves Amyloid-β Han, Hye-Eun Sellamuthu, Saravanan Shin, Bae Hyun Lee, Yong Jae Song, Sungmin Seo, Ji-Seon Baek, In-Sun Bae, Jeomil Kim, Hannah Yoo, Yung Joon Jung, Yong-Keun Song, Woo Keun Han, Pyung-Lim Park, Woo Jin PLoS One Research Article BACKGROUND: The nuclear inclusion a (NIa) protease of turnip mosaic virus (TuMV) is responsible for the processing of the viral polyprotein into functional proteins. NIa was previously shown to possess a relatively strict substrate specificity with a preference for Val-Xaa-His-Gln↓, with the scissile bond located after Gln. The presence of the same consensus sequence, Val(12)-His-His-Gln(15), near the presumptive α-secretase cleavage site of the amyloid-β (Aβ) peptide led us to hypothesize that NIa could possess activity against Aβ. METHODOLOGY/PRINCIPAL FINDINGS: Western blotting results showed that oligomeric as well as monomeric forms of Aβ can be degraded by NIa in vitro. The specific cleavage of Aβ was further confirmed by mass spectrometry analysis. NIa was shown to exist predominantly in the cytoplasm as observed by immunofluorescence microscopy. The overexpression of NIa in B103 neuroblastoma cells resulted in a significant reduction in cell death caused by both intracellularly generated and exogenously added Aβ. Moreover, lentiviral-mediated expression of NIa in APP(sw)/PS1 transgenic mice significantly reduced the levels of Aβ and plaques in the brain. CONCLUSIONS/SIGNIFICANCE: These results indicate that the degradation of Aβ in the cytoplasm could be a novel strategy to control the levels of Aβ, plaque formation, and the associated cell death. Public Library of Science 2010-12-20 /pmc/articles/PMC3004936/ /pubmed/21187975 http://dx.doi.org/10.1371/journal.pone.0015645 Text en Han et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Han, Hye-Eun
Sellamuthu, Saravanan
Shin, Bae Hyun
Lee, Yong Jae
Song, Sungmin
Seo, Ji-Seon
Baek, In-Sun
Bae, Jeomil
Kim, Hannah
Yoo, Yung Joon
Jung, Yong-Keun
Song, Woo Keun
Han, Pyung-Lim
Park, Woo Jin
The Nuclear Inclusion a (NIa) Protease of Turnip Mosaic Virus (TuMV) Cleaves Amyloid-β
title The Nuclear Inclusion a (NIa) Protease of Turnip Mosaic Virus (TuMV) Cleaves Amyloid-β
title_full The Nuclear Inclusion a (NIa) Protease of Turnip Mosaic Virus (TuMV) Cleaves Amyloid-β
title_fullStr The Nuclear Inclusion a (NIa) Protease of Turnip Mosaic Virus (TuMV) Cleaves Amyloid-β
title_full_unstemmed The Nuclear Inclusion a (NIa) Protease of Turnip Mosaic Virus (TuMV) Cleaves Amyloid-β
title_short The Nuclear Inclusion a (NIa) Protease of Turnip Mosaic Virus (TuMV) Cleaves Amyloid-β
title_sort nuclear inclusion a (nia) protease of turnip mosaic virus (tumv) cleaves amyloid-β
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3004936/
https://www.ncbi.nlm.nih.gov/pubmed/21187975
http://dx.doi.org/10.1371/journal.pone.0015645
work_keys_str_mv AT hanhyeeun thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT sellamuthusaravanan thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT shinbaehyun thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT leeyongjae thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT songsungmin thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT seojiseon thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT baekinsun thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT baejeomil thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT kimhannah thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT yooyungjoon thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT jungyongkeun thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT songwookeun thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT hanpyunglim thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT parkwoojin thenuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT hanhyeeun nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT sellamuthusaravanan nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT shinbaehyun nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT leeyongjae nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT songsungmin nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT seojiseon nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT baekinsun nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT baejeomil nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT kimhannah nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT yooyungjoon nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT jungyongkeun nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT songwookeun nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT hanpyunglim nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb
AT parkwoojin nuclearinclusionaniaproteaseofturnipmosaicvirustumvcleavesamyloidb