The FP25K Acts as a Negative Factor for the Infectivity of AcMNPV Budded Virus.

Baculoviruses generally produce two progeny phenotypes--the budded virus (BV) and the occlusion-derived virus (ODV)--and the intricate mechanisms that regulate the temporal synthesis of the two phenotypes are critical for the virus replication cycle, which are far from being clearly understood. FP25...

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Main Authors: Shufen Li, Manli Wang, Shu Shen, Zhihong Hu, Hualin Wang, Fei Deng
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4447387?pdf=render
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spelling doaj-ff23a55d12bf47cd86e49d0d6d00ee312020-11-25T02:14:07ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01105e012847110.1371/journal.pone.0128471The FP25K Acts as a Negative Factor for the Infectivity of AcMNPV Budded Virus.Shufen LiManli WangShu ShenZhihong HuHualin WangFei DengBaculoviruses generally produce two progeny phenotypes--the budded virus (BV) and the occlusion-derived virus (ODV)--and the intricate mechanisms that regulate the temporal synthesis of the two phenotypes are critical for the virus replication cycle, which are far from being clearly understood. FP25K was reported to be responsible for the regulation of BV/ODV, and the mutations within result in a decrease of normal ODVs formation and an increase of BVs production. In this study, we demonstrated that the increase of BV titer in an fp25k knockout recombinant (fp25k-negative) was a result of higher infectivity of BVs rather than an increased production of BVs. The constitution of the major structural proteins and genome of parental and fp25k-negative BVs were analyzed. The results showed that the integrity of the majority of DNA packaged into the fp25k-negative BVs was intact; i.e., the genomic DNA of fp25k-negative BV had better transformation and transfection efficiency than that of the parental virus, indicating more intact genomes in the virions. Although the analysis of proteins associated with BVs revealed that more envelope protein GP64 were incorporated into the fp25k-negative BVs, subsequent experiments suggested that overexpression of GP64 did not improve the titer of BVs. Thus, we conclude that the main reason for higher infectivity of BVs is due to better genome integrity, which benefits from the deletion of fp25k resulting in increased stability of the genome and produce a higher proportion of infectious BVs. FP25K acts as a negative factor for the infectivity of BV.http://europepmc.org/articles/PMC4447387?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Shufen Li
Manli Wang
Shu Shen
Zhihong Hu
Hualin Wang
Fei Deng
spellingShingle Shufen Li
Manli Wang
Shu Shen
Zhihong Hu
Hualin Wang
Fei Deng
The FP25K Acts as a Negative Factor for the Infectivity of AcMNPV Budded Virus.
PLoS ONE
author_facet Shufen Li
Manli Wang
Shu Shen
Zhihong Hu
Hualin Wang
Fei Deng
author_sort Shufen Li
title The FP25K Acts as a Negative Factor for the Infectivity of AcMNPV Budded Virus.
title_short The FP25K Acts as a Negative Factor for the Infectivity of AcMNPV Budded Virus.
title_full The FP25K Acts as a Negative Factor for the Infectivity of AcMNPV Budded Virus.
title_fullStr The FP25K Acts as a Negative Factor for the Infectivity of AcMNPV Budded Virus.
title_full_unstemmed The FP25K Acts as a Negative Factor for the Infectivity of AcMNPV Budded Virus.
title_sort fp25k acts as a negative factor for the infectivity of acmnpv budded virus.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Baculoviruses generally produce two progeny phenotypes--the budded virus (BV) and the occlusion-derived virus (ODV)--and the intricate mechanisms that regulate the temporal synthesis of the two phenotypes are critical for the virus replication cycle, which are far from being clearly understood. FP25K was reported to be responsible for the regulation of BV/ODV, and the mutations within result in a decrease of normal ODVs formation and an increase of BVs production. In this study, we demonstrated that the increase of BV titer in an fp25k knockout recombinant (fp25k-negative) was a result of higher infectivity of BVs rather than an increased production of BVs. The constitution of the major structural proteins and genome of parental and fp25k-negative BVs were analyzed. The results showed that the integrity of the majority of DNA packaged into the fp25k-negative BVs was intact; i.e., the genomic DNA of fp25k-negative BV had better transformation and transfection efficiency than that of the parental virus, indicating more intact genomes in the virions. Although the analysis of proteins associated with BVs revealed that more envelope protein GP64 were incorporated into the fp25k-negative BVs, subsequent experiments suggested that overexpression of GP64 did not improve the titer of BVs. Thus, we conclude that the main reason for higher infectivity of BVs is due to better genome integrity, which benefits from the deletion of fp25k resulting in increased stability of the genome and produce a higher proportion of infectious BVs. FP25K acts as a negative factor for the infectivity of BV.
url http://europepmc.org/articles/PMC4447387?pdf=render
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