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本文引用的文献

1
ASPECTS OF THE GROWTH OF POLIOVIRUS AS REVEALED BY THE PHOTODYNAMIC EFFECTS OF NEUTRAL RED AND ACRIDINE ORANGE.中性红和吖啶橙的光动力效应所揭示的脊髓灰质炎病毒生长的各个方面
Virology. 1963 Oct;21:135-45. doi: 10.1016/0042-6822(63)90249-6.
2
The incorporation of neutral red and acridine orange into developing poliovirus particles making them photosensitive.将中性红和吖啶橙掺入正在发育的脊髓灰质炎病毒颗粒中,使其具有光敏性。
Virology. 1961 May;14:11-21. doi: 10.1016/0042-6822(61)90127-1.
3
Is the 135S poliovirus particle an intermediate during cell entry?135S脊髓灰质炎病毒颗粒是细胞进入过程中的中间体吗?
J Virol. 2000 Sep;74(18):8757-61. doi: 10.1128/jvi.74.18.8757-8761.2000.
4
Stabilization of poliovirus by capsid-binding antiviral drugs is due to entropic effects.衣壳结合抗病毒药物对脊髓灰质炎病毒的稳定作用归因于熵效应。
J Mol Biol. 2000 Feb 18;296(2):335-40. doi: 10.1006/jmbi.1999.3483.
5
The amino-terminal nine amino acid sequence of poliovirus capsid VP4 protein is sufficient to confer N-myristoylation and targeting to detergent-insoluble membranes.脊髓灰质炎病毒衣壳VP4蛋白的氨基末端九个氨基酸序列足以赋予N-肉豆蔻酰化作用并靶向去污剂不溶性膜。
Biochemistry. 2000 Feb 8;39(5):1083-90. doi: 10.1021/bi992132e.
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Molecular tectonic model of virus structural transitions: the putative cell entry states of poliovirus.病毒结构转变的分子构造模型:脊髓灰质炎病毒假定的细胞进入状态
J Virol. 2000 Feb;74(3):1342-54. doi: 10.1128/jvi.74.3.1342-1354.2000.
7
Cleavage of transcriptional activator Oct-1 by poliovirus encoded protease 3Cpro.脊髓灰质炎病毒编码的蛋白酶3Cpro对转录激活因子Oct-1的切割作用。
Virology. 1997 Dec 8;239(1):176-85. doi: 10.1006/viro.1997.8862.
8
Inhibition of host cell transcription by poliovirus: cleavage of transcription factor CREB by poliovirus-encoded protease 3Cpro.脊髓灰质炎病毒对宿主细胞转录的抑制作用:脊髓灰质炎病毒编码的蛋白酶3Cpro对转录因子CREB的切割
J Virol. 1997 Feb;71(2):1220-6. doi: 10.1128/JVI.71.2.1220-1226.1997.
9
Characterization of the ion channels formed by poliovirus in planar lipid membranes.脊髓灰质炎病毒在平面脂质膜中形成的离子通道的特性研究。
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10
The poliovirus 135S particle is infectious.脊髓灰质炎病毒135S颗粒具有传染性。
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脊髓灰质炎病毒的VP4突变体中基因组传递和离子通道特性发生改变。

Genome delivery and ion channel properties are altered in VP4 mutants of poliovirus.

作者信息

Danthi Pranav, Tosteson Magdalena, Li Qi-Han, Chow Marie

机构信息

Department of Microbiology and Immunology, University of Arkansas for Medical Sciences, Little Rock 72205, USA.

出版信息

J Virol. 2003 May;77(9):5266-74. doi: 10.1128/jvi.77.9.5266-5274.2003.

DOI:10.1128/jvi.77.9.5266-5274.2003
PMID:12692228
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC153979/
Abstract

During entry into host cells, poliovirus undergoes a receptor-mediated conformational transition to form 135S particles with irreversible exposure of VP4 capsid sequences and VP1 N termini. To understand the role of VP4 during virus entry, the fate of VP4 during infection by site-specific mutants at threonine-28 of VP4 (4028T) was compared with that of the parental Mahoney type 1 virus. Three virus mutants were studied: the entry-defective, nonviable mutant 4028T.G and the viable mutants 4028T.S and 4028T.V, in which residue threonine-28 was changed to glycine, serine, and valine, respectively. We show that mutant and wild-type (WT) VP4 proteins are localized to cellular membranes after the 135S conformational transition. Both WT and viable 4028T mutant particles interact with lipid bilayers to form ion channels, whereas the entry-defective 4028T.G particles do not. In addition, the electrical properties of the channels induced by the mutant viruses are different from each other and from those of WT Mahoney and Sabin type 3 viruses. Finally, uncoating and/or cytoplasmic delivery of the viral genome is altered in the 4028T mutants: the 4028T.G lethal mutant does not release its genome into the cytoplasm, and genome delivery is slower during infection by mutant 4028T.V 135S particles than by mutant 4028T.S or WT 135S particles. The distinctive electrical characteristics of the different 4028T mutant channels indicate that VP4 sequences might form part of the channel structure. The different entry phenotypes of these VP4 mutants suggest that the ion channels may be related to VP4's role during genome uncoating and/or delivery.

摘要

在进入宿主细胞的过程中,脊髓灰质炎病毒经历受体介导的构象转变,形成135S颗粒,VP4衣壳序列和VP1 N端不可逆暴露。为了解VP4在病毒进入过程中的作用,将VP4苏氨酸-28位点特异性突变体(4028T)感染过程中VP4的命运与亲本1型马奥尼病毒进行了比较。研究了三种病毒突变体:进入缺陷型、无活力突变体4028T.G和有活力突变体4028T.S及4028T.V,其中苏氨酸-28位点分别突变为甘氨酸、丝氨酸和缬氨酸。我们发现,突变型和野生型(WT)VP4蛋白在135S构象转变后定位于细胞膜。WT和有活力的4028T突变体颗粒均与脂质双层相互作用形成离子通道,而进入缺陷型4028T.G颗粒则不能。此外,突变病毒诱导的通道电特性彼此不同,也与WT马奥尼和3型萨宾病毒不同。最后,4028T突变体中病毒基因组的脱壳和/或向细胞质的传递发生了改变:致死性突变体4028T.G不将其基因组释放到细胞质中,突变体4028T.V 135S颗粒感染期间基因组传递比突变体4028T.S或WT 135S颗粒慢。不同4028T突变体通道独特的电特性表明VP4序列可能构成通道结构的一部分。这些VP4突变体不同的进入表型表明离子通道可能与VP4在基因组脱壳和/或传递过程中的作用有关。