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Role of the C-Terminal Region of Vervet Monkey Polyomavirus 1 VP1 in Virion Formation

Recently, we detected novel vervet monkey polyomavirus 1 (VmPyV) in a vervet monkey. Among amino acid sequences of major capsid protein VP1s of other polyomaviruses, VmPyV VP1 is the longest with additional amino acid residues in the C-terminal region. To examine the role of VmPyV VP1 in virion form...

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Autores principales: YAMAGUCHI, Hiroki, KOBAYASHI, Shintaro, MARUYAMA, Junki, SASAKI, Michihito, TAKADA, Ayato, KIMURA, Takashi, SAWA, Hirofumi, ORBA, Yasuko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Japanese Society of Veterinary Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4073331/
https://www.ncbi.nlm.nih.gov/pubmed/24419975
http://dx.doi.org/10.1292/jvms.13-0568
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author YAMAGUCHI, Hiroki
KOBAYASHI, Shintaro
MARUYAMA, Junki
SASAKI, Michihito
TAKADA, Ayato
KIMURA, Takashi
SAWA, Hirofumi
ORBA, Yasuko
author_facet YAMAGUCHI, Hiroki
KOBAYASHI, Shintaro
MARUYAMA, Junki
SASAKI, Michihito
TAKADA, Ayato
KIMURA, Takashi
SAWA, Hirofumi
ORBA, Yasuko
author_sort YAMAGUCHI, Hiroki
collection PubMed
description Recently, we detected novel vervet monkey polyomavirus 1 (VmPyV) in a vervet monkey. Among amino acid sequences of major capsid protein VP1s of other polyomaviruses, VmPyV VP1 is the longest with additional amino acid residues in the C-terminal region. To examine the role of VmPyV VP1 in virion formation, we generated virus-like particles (VLPs) of VmPyV VP1, because VLP is a useful tool for the investigation of the morphological characters of polyomavirus virions. After the full-length VmPyV VP1 was subcloned into a mammalian expression plasmid, the plasmid was transfected into human embryonic kidney 293T (HEK293T) cells. Thereafter, VmPyV VLPs were purified from the cell lysates of the transfected cells via sucrose gradient sedimentation. Electron microscopic analyses revealed that VmPyV VP1 forms VLPs with a diameter of approximately 50 nm that are exclusively localized in cell nuclei. Furthermore, we generated VLPs consisting of the deletion mutant VmPyV VP1 (ΔC VP1) lacking the C-terminal 116 amino acid residues and compared its VLP formation efficiency and morphology to those of VLPs from wild-type VmPyV VP1 (WT VP1). WT and ΔC VP1 VLPs were similar in size, but the number of ΔC VP1 VLPs was much lower than that of WT VP1 VLPs in VP1-expressing HEK293T cells. These results suggest that the length of VP1 is unrelated to virion morphology; however, the C-terminal region of VmPyV VP1 affects the efficiency of its VLP formation.
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spelling pubmed-40733312014-06-27 Role of the C-Terminal Region of Vervet Monkey Polyomavirus 1 VP1 in Virion Formation YAMAGUCHI, Hiroki KOBAYASHI, Shintaro MARUYAMA, Junki SASAKI, Michihito TAKADA, Ayato KIMURA, Takashi SAWA, Hirofumi ORBA, Yasuko J Vet Med Sci Virology Recently, we detected novel vervet monkey polyomavirus 1 (VmPyV) in a vervet monkey. Among amino acid sequences of major capsid protein VP1s of other polyomaviruses, VmPyV VP1 is the longest with additional amino acid residues in the C-terminal region. To examine the role of VmPyV VP1 in virion formation, we generated virus-like particles (VLPs) of VmPyV VP1, because VLP is a useful tool for the investigation of the morphological characters of polyomavirus virions. After the full-length VmPyV VP1 was subcloned into a mammalian expression plasmid, the plasmid was transfected into human embryonic kidney 293T (HEK293T) cells. Thereafter, VmPyV VLPs were purified from the cell lysates of the transfected cells via sucrose gradient sedimentation. Electron microscopic analyses revealed that VmPyV VP1 forms VLPs with a diameter of approximately 50 nm that are exclusively localized in cell nuclei. Furthermore, we generated VLPs consisting of the deletion mutant VmPyV VP1 (ΔC VP1) lacking the C-terminal 116 amino acid residues and compared its VLP formation efficiency and morphology to those of VLPs from wild-type VmPyV VP1 (WT VP1). WT and ΔC VP1 VLPs were similar in size, but the number of ΔC VP1 VLPs was much lower than that of WT VP1 VLPs in VP1-expressing HEK293T cells. These results suggest that the length of VP1 is unrelated to virion morphology; however, the C-terminal region of VmPyV VP1 affects the efficiency of its VLP formation. The Japanese Society of Veterinary Science 2014-01-13 2014-05 /pmc/articles/PMC4073331/ /pubmed/24419975 http://dx.doi.org/10.1292/jvms.13-0568 Text en ©2014 The Japanese Society of Veterinary Science http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial No Derivatives (by-nc-nd) License.
spellingShingle Virology
YAMAGUCHI, Hiroki
KOBAYASHI, Shintaro
MARUYAMA, Junki
SASAKI, Michihito
TAKADA, Ayato
KIMURA, Takashi
SAWA, Hirofumi
ORBA, Yasuko
Role of the C-Terminal Region of Vervet Monkey Polyomavirus 1 VP1 in Virion Formation
title Role of the C-Terminal Region of Vervet Monkey Polyomavirus 1 VP1 in Virion Formation
title_full Role of the C-Terminal Region of Vervet Monkey Polyomavirus 1 VP1 in Virion Formation
title_fullStr Role of the C-Terminal Region of Vervet Monkey Polyomavirus 1 VP1 in Virion Formation
title_full_unstemmed Role of the C-Terminal Region of Vervet Monkey Polyomavirus 1 VP1 in Virion Formation
title_short Role of the C-Terminal Region of Vervet Monkey Polyomavirus 1 VP1 in Virion Formation
title_sort role of the c-terminal region of vervet monkey polyomavirus 1 vp1 in virion formation
topic Virology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4073331/
https://www.ncbi.nlm.nih.gov/pubmed/24419975
http://dx.doi.org/10.1292/jvms.13-0568
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