Liposomal Nanocontainers as Models for Viral Infection: Monitoring Viral Genomic RNA Transfer through Lipid Membranes

被引:27
作者
Bilek, Gerhard [1 ]
Matscheko, Nena M. [1 ]
Pickl-Herk, Angela [1 ]
Weiss, Victor U. [1 ]
Subirats, Xavier [1 ]
Kenndler, Ernst [1 ]
Blaas, Dieter [1 ]
机构
[1] Med Univ Vienna, Dept Med Biochem, Max F Perutz Labs, A-1030 Vienna, Austria
基金
奥地利科学基金会;
关键词
COMMON COLD VIRUS; HUMAN RHINOVIRUS SEROTYPE-2; CHIP ELECTROPHORESIS; CELLULAR RECEPTOR; PLASMA-MEMBRANE; HELA-CELLS; POLIOVIRUS; ENTRY; NEUTRALIZATION; FUSION;
D O I
10.1128/JVI.00329-11
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
After uptake into target cells, many nonenveloped viruses undergo conformational changes in the low-pH environment of the endocytic compartment. This results in exposure of amphipathic viral peptides and/or hydrophobic protein domains that are inserted into and either disrupt or perforate the vesicular membranes. The viral nucleic acids thereby gain access to the cytosol and initiate replication. We here demonstrate the in vitro transfer of the single-stranded positive-sense RNA genome of human rhinovirus 2 into liposomes decorated with recombinant very-low-density lipoprotein receptor fragments. Membrane-attached virions were exposed to pH 5.4, mimicking the in vivo pH environment of late endosomes. This triggered the release of the RNA whose arrival in the liposomal lumen was detected via in situ cDNA synthesis by encapsulated reverse transcriptase. Subsequently, cDNA was PCR amplified. At a low ratio between virions and lipids, RNA transfer was positively correlated with virus concentration. However, membranes became leaky at higher virus concentrations, which resulted in decreased cDNA synthesis. In accordance with earlier in vivo data, the RNA passes through the lipid membrane without causing gross damage to vesicles at physiologically relevant virus concentrations.
引用
收藏
页码:8368 / 8375
页数:8
相关论文
共 44 条
[31]   Analysis of common cold virus (human rhinovirus serotype 2) by capillary zone electrophoresis: The problem of peak identification [J].
Okun, VM ;
Ronacher, B ;
Blaas, D ;
Kenndler, E .
ANALYTICAL CHEMISTRY, 1999, 71 (10) :2028-2032
[32]   UNCOATING OF HUMAN RHINOVIRUS SEROTYPE-2 FROM LATE ENDOSOMES [J].
PRCHLA, E ;
KUECHLER, E ;
BLAAS, D ;
FUCHS, R .
JOURNAL OF VIROLOGY, 1994, 68 (06) :3713-3723
[33]   VIRUS-MEDIATED RELEASE OF ENDOSOMAL CONTENT IN-VITRO - DIFFERENT BEHAVIOR OF ADENOVIRUS AND RHINOVIRUS SEROTYPE-2 [J].
PRCHLA, E ;
PLANK, C ;
WAGNER, E ;
BLAAS, D ;
FUCHS, R .
JOURNAL OF CELL BIOLOGY, 1995, 131 (01) :111-123
[34]   Expression and folding of human very-low-density lipoprotein receptor fragments: Neutralization capacity toward human rhinovirus HRV2 [J].
Ronacher, B ;
Marlovits, TC ;
Moser, R ;
Blaas, D .
VIROLOGY, 2000, 278 (02) :541-550
[35]   Major and minor receptor group human rhinoviruses penetrate from endosomes by different mechanisms [J].
Schober, D ;
Kronenberger, P ;
Prchla, E ;
Blaas, D ;
Fuchs, R .
JOURNAL OF VIROLOGY, 1998, 72 (02) :1354-1364
[36]   Human rhinovirus type 2 is internalized by clathrin-mediated endocytosis [J].
Snyers, L ;
Zwickl, H ;
Blaas, D .
JOURNAL OF VIROLOGY, 2003, 77 (09) :5360-5369
[37]   Characterization of the ion channels formed by poliovirus in planar lipid membranes [J].
Tosteson, MT ;
Chow, M .
JOURNAL OF VIROLOGY, 1997, 71 (01) :507-511
[38]   Penetration of nonenveloped viruses into the cytoplasm [J].
Tsai, Billy .
ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY, 2007, 23 :23-43
[39]   Membrane lipids: where they are and how they behave [J].
van Meer, Gerrit ;
Voelker, Dennis R. ;
Feigenson, Gerald W. .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2008, 9 (02) :112-124
[40]   Liposomal Leakage Induced by Virus-Derived Peptides, Viral Proteins, and Entire Virions: Rapid Analysis by Chip Electrophoresis [J].
Weiss, Victor U. ;
Bilek, Gerhard ;
Pickl-Herk, Angela ;
Subirats, Xavier ;
Niespodziana, Katarzyna ;
Valenta, Rudolf ;
Blaas, Dieter ;
Kenndler, Ernst .
ANALYTICAL CHEMISTRY, 2010, 82 (19) :8146-8152