This Article
Right arrow Full Text
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrowReprints and Permissions
Right arrow Copyright Information
Right arrow Books from ASM Press
Right arrow MicrobeWorld
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Garoff, H.
Right arrow Articles by Opstelten, D.-J. E.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Garoff, H.
Right arrow Articles by Opstelten, D.-J. E.

 Previous Article  |  Next Article 

Microbiology and Molecular Biology Reviews, December 1998, p. 1171-1190, Vol. 62, No. 4
1092-2172/98/$04.00+0
Copyright © 1998, American Society for Microbiology. All rights reserved.

Virus Maturation by Budding

Henrik Garoff,* Roger Hewson,dagger and Dirk-Jan E. Opstelten

Department of Biosciences at Novum, S-141 57 Huddinge, Sweden

Enveloped viruses mature by budding at cellular membranes. It has been generally thought that this process is driven by interactions between the viral transmembrane proteins and the internal virion components (core, capsid, or nucleocapsid). This model was particularly applicable to alphaviruses, which require both spike proteins and a nucleocapsid for budding. However, genetic studies have clearly shown that the retrovirus core protein, i.e., the Gag protein, is able to form enveloped particles by itself. Also, budding of negative-strand RNA viruses (rhabdoviruses, orthomyxoviruses, and paramyxoviruses) seems to be accomplished mainly by internal components, most probably the matrix protein, since the spike proteins are not absolutely required for budding of these viruses either. In contrast, budding of coronavirus particles can occur in the absence of the nucleocapsid and appears to require two membrane proteins only. Biochemical and structural data suggest that the proteins, which play a key role in budding, drive this process by forming a three-dimensional (cage-like) protein lattice at the surface of or within the membrane. Similarly, recent electron microscopic studies revealed that the alphavirus spike proteins are also engaged in extensive lateral interactions, forming a dense protein shell at the outer surface of the viral envelope. On the basis of these data, we propose that the budding of enveloped viruses in general is governed by lateral interactions between peripheral or integral membrane proteins. This new concept also provides answers to the question of how viral and cellular membrane proteins are sorted during budding. In addition, it has implications for the mechanism by which the virion is uncoated during virus entry.


* Corresponding author. Mailing address: Department of Biosciences at Novum, Karolinska Institutet, S-141 57 Huddinge, Sweden. Phone: 46-8-608-9125. Fax: 46-8-774-5538. E-mail: henrik.garoff{at}cbt.ki.se.

dagger Present address: Centre of Applied Microbiology and Research, Viral Pathogens Unit, Porton Down, Salisbury, United Kingdom.


Microbiology and Molecular Biology Reviews, December 1998, p. 1171-1190, Vol. 62, No. 4
1092-2172/98/$04.00+0
Copyright © 1998, American Society for Microbiology. All rights reserved.



This article has been cited by other articles:

  • Pairan, A., Bruss, V. (2009). Functional Surfaces of the Hepatitis B Virus Capsid. J. Virol. 83: 11616-11623 [Abstract] [Full Text]  
  • Ghildyal, R., Ho, A., Dias, M., Soegiyono, L., Bardin, P. G., Tran, K. C., Teng, M. N., Jans, D. A. (2009). The Respiratory Syncytial Virus Matrix Protein Possesses a Crm1-Mediated Nuclear Export Mechanism. J. Virol. 83: 5353-5362 [Abstract] [Full Text]  
  • Neumann, P., Lieber, D., Meyer, S., Dautel, P., Kerth, A., Kraus, I., Garten, W., Stubbs, M. T. (2009). Crystal structure of the Borna disease virus matrix protein (BDV-M) reveals ssRNA binding properties. Proc. Natl. Acad. Sci. USA 106: 3710-3715 [Abstract] [Full Text]  
  • Schaecher, S. R., Diamond, M. S., Pekosz, A. (2008). The Transmembrane Domain of the Severe Acute Respiratory Syndrome Coronavirus ORF7b Protein Is Necessary and Sufficient for Its Retention in the Golgi Complex. J. Virol. 82: 9477-9491 [Abstract] [Full Text]  
  • Seo, J.-Y., Britt, W. J. (2008). Multimerization of Tegument Protein pp28 within the Assembly Compartment Is Required for Cytoplasmic Envelopment of Human Cytomegalovirus. J. Virol. 82: 6272-6287 [Abstract] [Full Text]  
  • Taylor, G. M., Hanson, P. I., Kielian, M. (2007). Ubiquitin Depletion and Dominant-Negative VPS4 Inhibit Rhabdovirus Budding without Affecting Alphavirus Budding. J. Virol. 81: 13631-13639 [Abstract] [Full Text]  
  • Shnyrova, A. V., Ayllon, J., Mikhalyov, I. I., Villar, E., Zimmerberg, J., Frolov, V. A. (2007). Vesicle formation by self-assembly of membrane-bound matrix proteins into a fluidlike budding domain. JCB 179: 627-633 [Abstract] [Full Text]  
  • Shi, X., Kohl, A., Li, P., Elliott, R. M. (2007). Role of the Cytoplasmic Tail Domains of Bunyamwera Orthobunyavirus Glycoproteins Gn and Gc in Virus Assembly and Morphogenesis. J. Virol. 81: 10151-10160 [Abstract] [Full Text]  
  • Powers, A. M., Logue, C. H. (2007). Changing patterns of chikungunya virus: re-emergence of a zoonotic arbovirus. J. Gen. Virol. 88: 2363-2377 [Full Text]  
  • Saikatendu, K. S., Joseph, J. S., Subramanian, V., Neuman, B. W., Buchmeier, M. J., Stevens, R. C., Kuhn, P. (2007). Ribonucleocapsid Formation of Severe Acute Respiratory Syndrome Coronavirus through Molecular Action of the N-Terminal Domain of N Protein. J. Virol. 81: 3913-3921 [Abstract] [Full Text]  
  • Pantua, H. D., McGinnes, L. W., Peeples, M. E., Morrison, T. G. (2006). Requirements for the Assembly and Release of Newcastle Disease Virus-Like Particles. J. Virol. 80: 11062-11073 [Abstract] [Full Text]  
  • Shi, X., Kohl, A., Leonard, V. H. J., Li, P., McLees, A., Elliott, R. M. (2006). Requirement of the N-Terminal Region of Orthobunyavirus Nonstructural Protein NSm for Virus Assembly and Morphogenesis.. J. Virol. 80: 8089-8099 [Abstract] [Full Text]  
  • Chan, W.-E., Chuang, C.-K., Yeh, S.-H., Chang, M.-S., Chen, S. S.-L. (2006). Functional characterization of heptad repeat 1 and 2 mutants of the spike protein of severe acute respiratory syndrome coronavirus.. J. Virol. 80: 3225-3237 [Abstract] [Full Text]  
  • Sandrin, V., Cosset, F.-L. (2006). Intracellular Versus Cell Surface Assembly of Retroviral Pseudotypes Is Determined by the Cellular Localization of the Viral Glycoprotein, Its Capacity to Interact with Gag, and the Expression of the Nef Protein. J. Biol. Chem. 281: 528-542 [Abstract] [Full Text]  
  • Song, C., Micoli, K., Bauerova, H., Pichova, I., Hunter, E. (2005). Amino Acid Residues in the Cytoplasmic Domain of the Mason-Pfizer Monkey Virus Glycoprotein Critical for Its Incorporation into Virions. J. Virol. 79: 11559-11568 [Abstract] [Full Text]  
  • Ghildyal, R., Li, D., Peroulis, I., Shields, B., Bardin, P. G., Teng, M. N., Collins, P. L., Meanger, J., Mills, J. (2005). Interaction between the respiratory syncytial virus G glycoprotein cytoplasmic domain and the matrix protein. J. Gen. Virol. 86: 1879-1884 [Abstract] [Full Text]  
  • Ruthel, G., Demmin, G. L., Kallstrom, G., Javid, M. P., Badie, S. S., Will, A. B., Nelle, T., Schokman, R., Nguyen, T. L., Carra, J. H., Bavari, S., Aman, M. J. (2005). Association of Ebola Virus Matrix Protein VP40 with Microtubules. J. Virol. 79: 4709-4719 [Abstract] [Full Text]  
  • Hoenen, T., Volchkov, V., Kolesnikova, L., Mittler, E., Timmins, J., Ottmann, M., Reynard, O., Becker, S., Weissenhorn, W. (2005). VP40 Octamers Are Essential for Ebola Virus Replication. J. Virol. 79: 1898-1905 [Abstract] [Full Text]  
  • Yoshii, K., Konno, A., Goto, A., Nio, J., Obara, M., Ueki, T., Hayasaka, D., Mizutani, T., Kariwa, H., Takashima, I. (2004). Single point mutation in tick-borne encephalitis virus prM protein induces a reduction of virus particle secretion. J. Gen. Virol. 85: 3049-3058 [Abstract] [Full Text]  
  • Shi, X., Lappin, D. F., Elliott, R. M. (2004). Mapping the Golgi Targeting and Retention Signal of Bunyamwera Virus Glycoproteins. J. Virol. 78: 10793-10802 [Abstract] [Full Text]  
  • Bosch, B. J., de Haan, C. A. M., Rottier, P. J. M. (2004). Coronavirus Spike Glycoprotein, Extended at the Carboxy Terminus with Green Fluorescent Protein, Is Assembly Competent. J. Virol. 78: 7369-7378 [Abstract] [Full Text]  
  • Sandrin, V., Muriaux, D., Darlix, J.-L., Cosset, F.-L. (2004). Intracellular Trafficking of Gag and Env Proteins and Their Interactions Modulate Pseudotyping of Retroviruses. J. Virol. 78: 7153-7164 [Abstract] [Full Text]  
  • Giguere, J.-F., Bounou, S., Paquette, J.-S., Madrenas, J., Tremblay, M. J. (2004). Insertion of Host-Derived Costimulatory Molecules CD80 (B7.1) and CD86 (B7.2) into Human Immunodeficiency Virus Type 1 Affects the Virus Life Cycle. J. Virol. 78: 6222-6232 [Abstract] [Full Text]  
  • Lontok, E., Corse, E., Machamer, C. E. (2004). Intracellular Targeting Signals Contribute to Localization of Coronavirus Spike Proteins near the Virus Assembly Site. J. Virol. 78: 5913-5922 [Abstract] [Full Text]  
  • Cornu, T. I., Feldmann, H., de la Torre, J. C. (2004). Cells Expressing the RING Finger Z Protein Are Resistant to Arenavirus Infection. J. Virol. 78: 2979-2983 [Abstract] [Full Text]  
  • Kolesnikova, L., Bamberg, S., Berghofer, B., Becker, S. (2004). The Matrix Protein of Marburg Virus Is Transported to the Plasma Membrane along Cellular Membranes: Exploiting the Retrograde Late Endosomal Pathway. J. Virol. 78: 2382-2393 [Abstract] [Full Text]  
  • Lobigs, M., Lee, E. (2004). Inefficient Signalase Cleavage Promotes Efficient Nucleocapsid Incorporation into Budding Flavivirus Membranes. J. Virol. 78: 178-186 [Abstract] [Full Text]  
  • Jarvis, M. A., Jones, T. R., Drummond, D. D., Smith, P. P., Britt, W. J., Nelson, J. A., Baldick, C. J. (2004). Phosphorylation of Human Cytomegalovirus Glycoprotein B (gB) at the Acidic Cluster Casein Kinase 2 Site (Ser900) Is Required for Localization of gB to the trans-Golgi Network and Efficient Virus Replication. J. Virol. 78: 285-293 [Abstract] [Full Text]  
  • Panchal, R. G., Ruthel, G., Kenny, T. A., Kallstrom, G. H., Lane, D., Badie, S. S., Li, L., Bavari, S., Aman, M. J. (2003). In vivo oligomerization and raft localization of Ebola virus protein VP40 during vesicular budding. Proc. Natl. Acad. Sci. USA 100: 15936-15941 [Abstract] [Full Text]  
  • Allison, S. L., Tao, Y. J., O'Riordain, G., Mandl, C. W., Harrison, S. C., Heinz, F. X. (2003). Two Distinct Size Classes of Immature and Mature Subviral Particles from Tick-Borne Encephalitis Virus. J. Virol. 77: 11357-11366 [Abstract] [Full Text]  
  • Bick, M. J., Carroll, J.-W. N., Gao, G., Goff, S. P., Rice, C. M., MacDonald, M. R. (2003). Expression of the Zinc-Finger Antiviral Protein Inhibits Alphavirus Replication. J. Virol. 77: 11555-11562 [Abstract] [Full Text]  
  • Perez, M., Craven, R. C., de la Torre, J. C. (2003). The small RING finger protein Z drives arenavirus budding: Implications for antiviral strategies. Proc. Natl. Acad. Sci. USA 100: 12978-12983 [Abstract] [Full Text]  
  • Strecker, T., Eichler, R., Meulen, J. t., Weissenhorn, W., Dieter Klenk, H., Garten, W., Lenz, O. (2003). Lassa Virus Z Protein Is a Matrix Protein Sufficient for the Release of Virus-Like Particles. J. Virol. 77: 10700-10705 [Abstract] [Full Text]  
  • Meiser, A., Sancho, C., Krijnse Locker, J. (2003). Plasma Membrane Budding as an Alternative Release Mechanism of the Extracellular Enveloped Form of Vaccinia Virus from HeLa Cells. J. Virol. 77: 9931-9942 [Abstract] [Full Text]  
  • Chazal, N., Gerlier, D. (2003). Virus Entry, Assembly, Budding, and Membrane Rafts. Microbiol. Mol. Biol. Rev. 67: 226-237 [Abstract] [Full Text]  
  • Inoue, M., Tokusumi, Y., Ban, H., Kanaya, T., Shirakura, M., Tokusumi, T., Hirata, T., Nagai, Y., Iida, A., Hasegawa, M. (2003). A New Sendai Virus Vector Deficient in the Matrix Gene Does Not Form Virus Particles and Shows Extensive Cell-to-Cell Spreading. J. Virol. 77: 6419-6429 [Abstract] [Full Text]  
  • Rota, P. A., Oberste, M. S., Monroe, S. S., Nix, W. A., Campagnoli, R., Icenogle, J. P., Penaranda, S., Bankamp, B., Maher, K., Chen, M.-h., Tong, S., Tamin, A., Lowe, L., Frace, M., DeRisi, J. L., Chen, Q., Wang, D., Erdman, D. D., Peret, T. C. T., Burns, C., Ksiazek, T. G., Rollin, P. E., Sanchez, A., Liffick, S., Holloway, B., Limor, J., McCaustland, K., Olsen-Rasmussen, M., Fouchier, R., Gunther, S., Osterhaus, A. D. M. E., Drosten, C., Pallansch, M. A., Anderson, L. J., Bellini, W. J. (2003). Characterization of a Novel Coronavirus Associated with Severe Acute Respiratory Syndrome. Science 300: 1394-1399 [Abstract] [Full Text]  
  • Song, C., Dubay, S. R., Hunter, E. (2003). A Tyrosine Motif in the Cytoplasmic Domain of Mason-Pfizer Monkey Virus Is Essential for the Incorporation of Glycoprotein into Virions. J. Virol. 77: 5192-5200 [Abstract] [Full Text]  
  • Holm, K., Weclewicz, K., Hewson, R., Suomalainen, M. (2003). Human Immunodeficiency Virus Type 1 Assembly and Lipid Rafts: Pr55gag Associates with Membrane Domains That Are Largely Resistant to Brij98 but Sensitive to Triton X-100. J. Virol. 77: 4805-4817 [Abstract] [Full Text]  
  • Brown, E. L., Lyles, D. S. (2003). Organization of the Vesicular Stomatitis Virus Glycoprotein into Membrane Microdomains Occurs Independently of Intracellular Viral Components. J. Virol. 77: 3985-3992 [Abstract] [Full Text]  
  • Lorenz, I. C., Kartenbeck, J., Mezzacasa, A., Allison, S. L., Heinz, F. X., Helenius, A. (2003). Intracellular Assembly and Secretion of Recombinant Subviral Particles from Tick-Borne Encephalitis Virus. J. Virol. 77: 4370-4382 [Abstract] [Full Text]  
  • Homman-Loudiyi, M., Hultenby, K., Britt, W., Soderberg-Naucler, C. (2003). Envelopment of Human Cytomegalovirus Occurs by Budding into Golgi-Derived Vacuole Compartments Positive for gB, Rab 3, Trans-Golgi Network 46, and Mannosidase II. J. Virol. 77: 3191-3203 [Abstract] [Full Text]  
  • Inoue, M., Tokusumi, Y., Ban, H., Kanaya, T., Tokusumi, T., Nagai, Y., Iida, A., Hasegawa, M. (2003). Nontransmissible Virus-Like Particle Formation by F-Deficient Sendai Virus Is Temperature Sensitive and Reduced by Mutations in M and HN Proteins. J. Virol. 77: 3238-3246 [Abstract] [Full Text]  
  • Sanz, M. A., Madan, V., Carrasco, L., Nieva, J. L. (2003). Interfacial Domains in Sindbis Virus 6K Protein. DETECTION AND FUNCTIONAL CHARACTERIZATION. J. Biol. Chem. 278: 2051-2057 [Abstract] [Full Text]  
  • Op De Beeck, A., Molenkamp, R., Caron, M., Ben Younes, A., Bredenbeek, P., Dubuisson, J. (2002). Role of the Transmembrane Domains of prM and E Proteins in the Formation of Yellow Fever Virus Envelope. J. Virol. 77: 813-820 [Abstract] [Full Text]  
  • Ponsel, D., Bruss, V. (2002). Mapping of Amino Acid Side Chains on the Surface of Hepatitis B Virus Capsids Required for Envelopment and Virion Formation. J. Virol. 77: 416-422 [Abstract] [Full Text]  
  • Liang, C., Hu, J., Russell, R. S., Roldan, A., Kleiman, L., Wainberg, M. A. (2002). Characterization of a Putative {alpha}-Helix across the Capsid-SP1 Boundary That Is Critical for the Multimerization of Human Immunodeficiency Virus Type 1 Gag. J. Virol. 76: 11729-11737 [Abstract] [Full Text]  
  • Sakuragi, S., Goto, T., Sano, K., Morikawa, Y. (2002). HIV type 1 Gag virus-like particle budding from spheroplasts of Saccharomycescerevisiae. Proc. Natl. Acad. Sci. USA 99: 7956-7961 [Abstract] [Full Text]  
  • Grgacic, E. V. L. (2002). Identification of structural determinants of the first transmembrane domain of the small envelope protein of duck hepatitis B virus essential for particle morphogenesis. J. Gen. Virol. 83: 1635-1644 [Abstract] [Full Text]  
  • Lee, K. J., Perez, M., Pinschewer, D. D., de la Torre, J. C. (2002). Identification of the Lymphocytic Choriomeningitis Virus (LCMV) Proteins Required To Rescue LCMV RNA Analogs into LCMV-Like Particles. J. Virol. 76: 6393-6397 [Abstract] [Full Text]  
  • Bavari, S., Bosio, C. M., Wiegand, E., Ruthel, G., Will, A. B., Geisbert, T. W., Hevey, M., Schmaljohn, C., Schmaljohn, A., Aman, M. J. (2002). Lipid Raft Microdomains: A Gateway for Compartmentalized Trafficking of Ebola and Marburg Viruses. JEM 195: 593-602 [Abstract] [Full Text]  
  • Andres, G., Garcia-Escudero, R., Salas, M. L., Rodriguez, J. M. (2002). Repression of African Swine Fever Virus Polyprotein pp220-Encoding Gene Leads to the Assembly of Icosahedral Core-Less Particles. J. Virol. 76: 2654-2666 [Abstract] [Full Text]  
  • Sakaguchi, T., Uchiyama, T., Huang, C., Fukuhara, N., Kiyotani, K., Nagai, Y., Yoshida, T. (2002). Alteration of Sendai Virus Morphogenesis and Nucleocapsid Incorporation due to Mutation of Cysteine Residues of the Matrix Protein. J. Virol. 76: 1682-1690 [Abstract] [Full Text]  
  • Kolesnikova, L., Bugany, H., Klenk, H.-D., Becker, S. (2002). VP40, the Matrix Protein of Marburg Virus, Is Associated with Membranes of the Late Endosomal Compartment. J. Virol. 76: 1825-1838 [Abstract] [Full Text]  
  • Smit, J. M., Klimstra, W. B., Ryman, K. D., Bittman, R., Johnston, R. E., Wilschut, J. (2001). PE2 Cleavage Mutants of Sindbis Virus: Correlation between Viral Infectivity and pH-Dependent Membrane Fusion Activation of the Spike Heterodimer. J. Virol. 75: 11196-11204 [Abstract] [Full Text]  
  • Lu, Y. E., Eng, C. H., Shome, S. G., Kielian, M. (2001). In Vivo Generation and Characterization of a Soluble Form of the Semliki Forest Virus Fusion Protein. J. Virol. 75: 8329-8339 [Abstract] [Full Text]  
  • Latham, T., Galarza, J. M. (2001). Formation of Wild-Type and Chimeric Influenza Virus-Like Particles following Simultaneous Expression of Only Four Structural Proteins. J. Virol. 75: 6154-6165 [Abstract] [Full Text]  
  • Tritel, M., Resh, M. D. (2001). The Late Stage of Human Immunodeficiency Virus Type 1 Assembly Is an Energy-Dependent Process. J. Virol. 75: 5473-5481 [Abstract] [Full Text]  
  • Jasenosky, L. D., Neumann, G., Lukashevich, I., Kawaoka, Y. (2001). Ebola Virus VP40-Induced Particle Formation and Association with the Lipid Bilayer. J. Virol. 75: 5205-5214 [Abstract] [Full Text]  
  • Mabit, H., Schaller, H. (2000). Intracellular Hepadnavirus Nucleocapsids Are Selected for Secretion by Envelope Protein-Independent Membrane Binding. J. Virol. 74: 11472-11478 [Abstract] [Full Text]  
  • Gómez-Puertas, P., Albo, C., Pérez-Pastrana, E., Vivo, A., Portela, A. (2000). Influenza Virus Matrix Protein Is the Major Driving Force in Virus Budding. J. Virol. 74: 11538-11547 [Abstract] [Full Text]  
  • Lu, Y. E., Kielian, M. (2000). Semliki Forest Virus Budding: Assay, Mechanisms, and Cholesterol Requirement. J. Virol. 74: 7708-7719 [Abstract] [Full Text]  
  • Tritel, M., Resh, M. D. (2000). Kinetic Analysis of Human Immunodeficiency Virus Type 1 Assembly Reveals the Presence of Sequential Intermediates. J. Virol. 74: 5845-5855 [Abstract] [Full Text]  
  • Hammarstedt, M., Wallengren, K., Pedersen, K. W., Roos, N., Garoff, H. (2000). Minimal exclusion of plasma membrane proteins during retroviral envelope formation. Proc. Natl. Acad. Sci. USA 10.1073/pnas.120051597v1 [Abstract] [Full Text]  
  • de Haan, C. A. M., Vennema, H., Rottier, P. J. M. (2000). Assembly of the Coronavirus Envelope: Homotypic Interactions between the M Proteins. J. Virol. 74: 4967-4978 [Abstract] [Full Text]  
  • O'Brien, J. A., Taylor, J. A., Bellamy, A. R. (2000). Probing the Structure of Rotavirus NSP4: a Short Sequence at the Extreme C Terminus Mediates Binding to the Inner Capsid Particle. J. Virol. 74: 5388-5394 [Abstract] [Full Text]  
  • Cocquerel, L., Wychowski, C., Minner, F., Penin, F., Dubuisson, J. (2000). Charged Residues in the Transmembrane Domains of Hepatitis C Virus Glycoproteins Play a Major Role in the Processing, Subcellular Localization, and Assembly of These Envelope Proteins. J. Virol. 74: 3623-3633 [Abstract] [Full Text]  
  • Choudhary, S., De, B. P., Banerjee, A. K. (2000). Specific Phosphorylated Forms of Glyceraldehyde 3-Phosphate Dehydrogenase Associate with Human Parainfluenza Virus Type 3 and Inhibit Viral Transcription In Vitro. J. Virol. 74: 3634-3641 [Abstract] [Full Text]  
  • Sanchez, V., Sztul, E., Britt, W. J. (2000). Human Cytomegalovirus pp28 (UL99) Localizes to a Cytoplasmic Compartment Which Overlaps the Endoplasmic Reticulum-Golgi-Intermediate Compartment. J. Virol. 74: 3842-3851 [Abstract] [Full Text]  
  • Kim, K. H., Strauss, E. G., Strauss, J. H. (2000). Adaptive Mutations in Sindbis Virus E2 and Ross River Virus E1 That Allow Efficient Budding of Chimeric Viruses. J. Virol. 74: 2663-2670 [Abstract] [Full Text]  
  • Robison, C. S., Whitt, M. A. (2000). The Membrane-Proximal Stem Region of Vesicular Stomatitis Virus G Protein Confers Efficient Virus Assembly. J. Virol. 74: 2239-2246 [Abstract] [Full Text]  
  • Grgacic, E. V. L., Kuhn, C., Schaller, H. (2000). Hepadnavirus Envelope Topology: Insertion of a Loop Region in the Membrane and Role of S in L Protein Translocation. J. Virol. 74: 2455-2458 [Abstract] [Full Text]  
  • Schmitt, A. P., He, B., Lamb, R. A. (1999). Involvement of the Cytoplasmic Domain of the Hemagglutinin-Neuraminidase Protein in Assembly of the Paramyxovirus Simian Virus 5. J. Virol. 73: 8703-8712 [Abstract] [Full Text]  
  • Moraleda, G., Seeholzer, S., Bichko, V., Dunbrack, R., Otto, J., Taylor, J. (1999). Unique Properties of the Large Antigen of Hepatitis Delta Virus. J. Virol. 73: 7147-7152 [Abstract] [Full Text]  
  • de Haan, C. A. M., Smeets, M., Vernooij, F., Vennema, H., Rottier, P. J. M. (1999). Mapping of the Coronavirus Membrane Protein Domains Involved in Interaction with the Spike Protein. J. Virol. 73: 7441-7452 [Abstract] [Full Text]  
  • Shishkov, A. V., Goldanskii, V. I., Baratova, L. A., Fedorova, N. V., Ksenofontov, A. L., Zhirnov, O. P., Galkin, A. V. (1999). The in situ spatial arrangement of the influenza A virus matrix protein M1 assessed by tritium bombardment. Proc. Natl. Acad. Sci. USA 96: 7827-7830 [Abstract] [Full Text]  
  • Lu, Y. E., Cassese, T., Kielian, M. (1999). The Cholesterol Requirement for Sindbis Virus Entry and Exit and Characterization of a Spike Protein Region Involved in Cholesterol Dependence. J. Virol. 73: 4272-4278 [Abstract] [Full Text]  
  • Hammarstedt, M., Wallengren, K., Pedersen, K. W., Roos, N., Garoff, H. (2000). Minimal exclusion of plasma membrane proteins during retroviral envelope formation. Proc. Natl. Acad. Sci. USA 97: 7527-7532 [Abstract] [Full Text]