Nipah virus fusion protein: Importance of the cytoplasmic tail for endosomal trafficking and bioactivity

被引:23
作者
Weis, Michael [1 ]
Maisner, Andrea [1 ]
机构
[1] Univ Marburg, Inst Virol, D-35032 Marburg, Germany
关键词
Nipah virus; Fusion protein; Endocytosis; Cleavage; Fusion activity; Cytoplasmic tail; AFRICAN BAT HENIPAVIRUS; LENTIVIRAL VECTORS; HENDRA VIRUS; PARAMYXOVIRUS FUSION; MEASLES VIRUSES; MEMBRANE-FUSION; CELL-FUSION; CATHEPSIN-L; AMINO-ACID; F-PROTEIN;
D O I
10.1016/j.ejcb.2015.05.005
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Nipah virus (NiV) is a highly pathogenic paramyxovirus which encodes two surface glycoproteins: the receptor-binding protein G and the fusion protein F. As for all paramyxoviruses, proteolytic activation of the NiV-F protein is an indispensable prerequisite for viral infectivity. Interestingly, proteolytic activation of NiV-F differs principally from other paramyxoviruses with respect to protease usage (cathepsins instead of trypsin- or furin-like proteases), and the subcellular localization where cleavage takes place (endosomes instead of Golgi or plasma membrane). To allow efficient F protein activation needed for productive virus replication and cell-to-cell fusion, the NiV-F cytoplasmic tail contains a classical tyrosine-based endocytosis signal (Y525RSL) that we have shown earlier to be needed for F uptake and proteolytic activation. In this report, we furthermore revealed that an intact endocytosis signal alone is not sufficient for full bioactivity. The very C-terminus of the cytoplasmic tail is needed in addition. Deletions of more than four residues did not affect F uptake or endosomal cleavage but downregulated the surface expression, likely by delaying the intracellular trafficking through endosomal-recycling compartments. Given that the NiV-F cytoplasmic tail is needed for timely and correct intracellular trafficking, endosomal cleavage and fusion activity, the influence of tail truncations on NiV-mediated cell-to-cell fusion and on pseudotyping lentiviral vectors is discussed. (C) 2015 Elsevier GmbH. All rights reserved.
引用
收藏
页码:316 / 322
页数:7
相关论文
共 56 条
[51]   The exceptionally large genome of Hendra virus:: Support for creation of a new genus within the family Paramyxoviridae [J].
Wang, LF ;
Yu, M ;
Hansson, E ;
Pritchard, LI ;
Shiell, B ;
Michalski, WP ;
Eaton, BT .
JOURNAL OF VIROLOGY, 2000, 74 (21) :9972-9979
[52]   Fusion activity of African henipavirus F proteins with a naturally occurring start codon directly upstream of the signal peptide [J].
Weis, Michael ;
Behner, Laura ;
Binger, Tabea ;
Drexler, Jan Felix ;
Drosten, Christian ;
Maisner, Andrea .
VIRUS RESEARCH, 2015, 201 :85-93
[53]   Characterization of African bat henipavirus GH-M74a glycoproteins [J].
Weis, Michael ;
Behner, Laura ;
Hoffmann, Markus ;
Krueger, Nadine ;
Herrler, Georg ;
Drosten, Christian ;
Drexler, Jan Felix ;
Dietzel, Erik ;
Maisner, Andrea .
JOURNAL OF GENERAL VIROLOGY, 2014, 95 :539-548
[54]  
Weise C., 2010, J VIROL
[55]   Characterization of a third generation lentiviral vector pseudotyped with Nipah virus envelope proteins for endothelial cell transduction [J].
Witting, S. R. ;
Vallanda, P. ;
Gamble, A. L. .
GENE THERAPY, 2013, 20 (10) :997-1005
[56]   A golden hamster model for human acute Nipah virus infection [J].
Wong, KT ;
Grosjean, I ;
Brisson, C ;
Blanquier, B ;
Fevre-Montange, M ;
Bernard, A ;
Loth, P ;
Georges-Courbot, MC ;
Chevallier, M ;
Akaoka, H ;
Marianneau, P ;
Lam, SK ;
Wild, TF ;
Deubel, V .
AMERICAN JOURNAL OF PATHOLOGY, 2003, 163 (05) :2127-2137