The nidoviruses: (coronaviruses and arteriviruses) ; [proceedings of the VIII International Symposium on Nidoviruses, held May 20 - 25, 2000, in Lake Harmony, Pennsylvania]
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
New York
Kluwer Acad.
2001
|
Schriftenreihe: | Advances in experimental medicine and biology
494 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVI, 728 S. Ill., graph. Darst. |
ISBN: | 0306466341 |
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245 | 1 | 0 | |a The nidoviruses |b (coronaviruses and arteriviruses) ; [proceedings of the VIII International Symposium on Nidoviruses, held May 20 - 25, 2000, in Lake Harmony, Pennsylvania] |c ed. by Ehud Lavi ... |
264 | 1 | |a New York |b Kluwer Acad. |c 2001 | |
300 | |a XVI, 728 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
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Datensatz im Suchindex
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adam_text | CONTENTS
1.
Epidemiology, evolution and genome structure
1.1
Big Nido
virus Genome: When Count and Order of Domains Matter.
1
ALEXANDER
E. GORBALENYA
1.2
Molecular Epidemiology and Evolution of Equine Arteritis Virus.
19
UDENI B. R. BALASURIYA, JODIF. HEDGES, AND
N.
JAMES
MACLACHLAN
1.3
Genetic and Antigenic Stability of PRRS Virus in Pigs: Field and Experimental
Prospectives.
25
KYOUNG-JIN YOON, CHIH-CHENG CHANG, JEFF ZIMMERMAN, AND
KAREN HARMON
1.4
Appearance of Novel PRRSV Isolates by Recombination in the Natural Environment.
31
MICHAEL P. MURTAUGH, SHISHAN YUAN, AND KAY
S. FAABERG
1.5
Predicted
RNA
Folding Suggests PRRSV Major and
Heteroclite
Subgenomic
Transcripts Result from Polymerase Switching at Unpaired Nucleotides.
37
KAY S. FAABERG, MICHAEL P. MURTAUGH, AND SHISHAN YUAN
1.6
Gill-Associated Virus oiPenaeus Monodon Prawns. Molecular Evidence for the First
Invertebrate
Nido
virus.
43
J.A. COWLEY, CM. DIMMOCK,
K.M. SPANN,
AND P.J. WALKER
1.7
Elucidation of the Genomic Nucleotide Sequence of Bovine Coronavirus and Analysis
of Cryptic Leader mRNA Fusion Sites.
49
VLADIMIR
N.
CHOULJENKO, TIMOTHY P. FOSTER,
XIAOQÍNG
LIN,
JOHANNES STORZ, AND
KONSTANTIN
G.
KOUSOULAS
! .8
Biological and Molecular Characteristics of an HEV Isolate Associated with Recent
Acute Outbreaks of Encephalomyelitis in Quebec Pig Farms.
57
A. MARIE-JOSÉE SASSEVULE,
ANNE-MARIE GÉLINAS,
NICOLE SAWYER.
MARTINE
BOUTIN, AND SERGE
DEA
1.9
Identification of Specific Variations within the HE,
S
1,
and ORF4 Genes of Bovine
Coronaviruses Associated with Enteric and Respiratory Diseases in Dairy Cattle.
63
ANNE-MARIE GÉLINAS,
AM-J SASSEVILLE,
AND SERGE
DEA
ix
x
Contents
1.10
Genetic
Variation
of ORFs
3
and
4
of
Equine
Arteritis
Virus.
69
JODI F.
HEDGES,
UDENI B.R. BALASURIYA, JB
TOPOL,
DUSTIN W. LEE,
AND N. JAMES MACLACHLAN
1.11
Full-Length Genomic Sequence of Bovine
Coronavirus
(31
KB): Completion of the
Open Reading Frame 1A/1B Sequences.
73
DONGWAN YOO AND YANLONG PEI
2.
Pathogenesis
2.1
Analysis of CNS Inflammatory Responses to MHV: Role of spike determinants in
initiating chemokine and cytokine responses.
77
JULIA D. REMPEL AND MICHAEL J. BUCHMEIER
2.2
Analysis of Nonessential Gene Function in
Recombinant MHV-JHM.
Gene
4
Knockout
Recombinant
Virus.
83
EVELENA ONTIVEROS,
LILI
KUO, PAUL MASTERS, AND STANLEY PERLMAN
2.3
Persistence of Porcine Reproductive and Respiratory Syndrome in Pigs.
91
DENNIS HORTER, CHIH-CHEN CHANG, ROMAN POGRANICHNYY, JEFF
ZIMMERMAN, AND KYOUNG-JIN YOON
2.4
The Severity of Hepatic Lesion after Intraperitoneal JHMV Infection in IFN-gamma
Deficient Mice is Parallel to Viral Replication in Hepatocytes in Vitro.
95
SHIGERU KYUWA,
ЅЕШ
KAWAMURA, SHINWA SHIBATA, KENJI
МАСНІЇ,
YOH-ICHI TAGAWA, YOICHIROH IWAKURA, AND
TORU
URANO
2.5
Susceptibility of
Murine
CNS to OC43 Infection.
101
HELENE
JACOMY AND PIERRE J.
TALBOT
2.6
Caspase Inhibitors Block MHV-3 Induced Apoptosis and Enhance Viral Replication
and Pathogenicity.
109
JULIAN L. LEIBOWITZ AND ELENA BELYAVSKAYA
2.7
MHV Neuropathogenesis: The Study of Chimeric
S
Genes and Mutations in the
Hypervariable
Region.
115
JOANNA J. PHILLIPS AND SUSAN R. WEISS
2.8
Mutation of the Immunodominant CD8+ Epitope in the MHV-4 Spike Protein.
121
MING MING CHUA, JOANNA J. PHILLIPS, SU-HUN
SEO,
EHUD
LAVI,
AND
SUSAN R. WEISS
2.9
Spread of Hemagglutinating Encephalomyelitis Virus (HEV) in the CNS of Rats
Inoculated by
Intranasal
Route.
127
NORIO
HIRANO, KOUJIRO TOHYAMA, HIDEHARU
TAIRA,
AND TSUTOMU
HASHIKAWA
2.10
Demyelination Determinants in the
S
Gene of MHV.
133
JAYASRI DAS
SARMA, LI FU,
SUSAN R. WEISS, AND EHUD
LAVI
2.11
Role of the Spike Protein in
Murine
Coronavirus
Induced Hepatitis: An in vivo Study
Using Targeted
RNA
Recombination.
139
SONIA
NAVAS. SU-HUN SEO.
MING MING CHUA, JAYASRI DAS
SARMA,
SUSAN T. HINGLEY, EHUD
LAVI,
AND SUSAN R. WEISS
2.12
Neurovirulence
for Mice of Soiubie Receptor-Resistant Mutants of
Murine Coronavirus
JHMV.
145
SHUTOKU MATSUYAMA, RIHITO WATANABE, AND FUMIHIRO TAGUCHI
Contents xi
2.13
Infection
of
Hemagglutinating
Encephalomyelitis Virus (HEV) at the Visual Pathways
ofRats.
149
NORIO
HIRANO, KOUJIRO TOHYAMA, NOBUYO OOTANI, AND TSUTOMU
HASHIKAWA
2.14
The Effect oftheT1087N
S
Gene Mutation on MHV-A59 Pathogenesis.
155
JAYASRJ DAS
SARMA, LI FU,
AND EHUD
LAVI
2.15
Pathogenesis of Fusion Deficient
Recombinant
Mouse Hepatitis Viruses.
159
L.
DE GROOT,
J. D.
PIÑÓN,
J. PHILLIPS,
E. LAVI,
AND S. R.
WEISS
2.16
Programmed Cell Death in MHV-Induced demyelination.
163
TALYA SCHWARTZ,
LI FU,
AND EHUD
LAVI
2.17
In vitro Properties and Pathogenesis of A59/MHV4 Chimeric Mouse Hepatitis Viruses.
169
JEAN
С
TSAI AND SUSAN R. WEISS
3.
Viral entry, receptors, fusion, and glycoprotein functions
3.1.
Receptor Specificity and Receptor-Induced Conformational Changes in Mouse Hepatitis
Virus Spike Glycoprotein.
173
KATHRYN V. HOLMES, BRUCE
D. ZELUS,
JEANNE
H. SCHICKLÍ,
AND
SUSAN R. WEISS
3.2
Murine
Coronavirus
Spike Glycoprotein: Receptor Binding and Membrane Fusion
Activities.
183
THOMAS M. GALLAGHER
3.3
Human
Coronavirus HCoV-229E
Enters Susceptible Cells via the Endocytic Pathway.
193
DIANNA M.
BLAU
AND KATHRYN V. HOLMES
3.4
Addition of a Single Glycosylation Site to hAPN Blocks Human
Coronavirus^ÇE
Receptor Activity.
99
DAVID E. WENTWORTH AND KATHRYN V. HOLMES
3.5
Effects of
Amino
Acid Insertions in the Cysteine-Rich Domain of the MHV-A59 Spike
Protein on Cell Fusion. 205
KEVIN W. CHANG AND JAMES L.
GOMBOLD
3.6
Involvement in Fusion Activity of an Epitope in the S2 Subunit of
Murine
Coronavirus
Spike Protein. ~ J
FUMIHIRO TAGUCHI AND YOHKO K. SHIMAZAKI
3.7
Are Intestinal Mucins Involved in the Pathogemcity of Transmissible Gastroenteritis
Coronavirus?
CHRISTEL SCWEGMANN,
GERT ZIMMER,
AND
GEORG HERRLER
3.8
Biochemical Properties and Processing of the Three Major Structural Proteins of PRRS
Virus Expressed by
Recombinant Adenoviruses:
Structural, Functional and Community
Aspects.
CARL A. GAGNON, YVES LANGELIER. BERNARD MASSIE. AND SERGE
DEA
3.9
Inefficient Infection of Soluble Receptor-Resistant Mutants of
Murine
Coronavirus
m
Cells Expressing MHVR2 Receptor.
SHUTOKU MATSUYAMA AND FUMIHIRO TAGUCHI
3.10
A Study on Mouse Hepatitis Virus Receptor Genotype in the Wild Mouse.
NOBUHISA OHTSUKA, KIMIYUKI TSUCHIYA. EIICHI HONDA, AND FUMIHIRO
TAGUCHI
xii
Contents
4.
Replicase
4.1
Arterivirus
RNA
Synthesis Dissected: Nucleotides, Membranes,
Amino
Acids, and a
Bit of Zinc...
241
ERIC J.
SNIJDER
4.2
Guanosine Triphosphatase Activity of the Human
Coronavirus Helicase.
255
ANJA
SEYBERT AND JOHN ZIEBUHR
4.3
A Strategy for the Generation of an Infectious Transmissible Gastroenteritis
Coronavirus
from Cloned cDNA.
261
FERNANDO ALMAZAN, JOSE M. GONZALEZ,
ZOLTÁN PÉNZES,
ANDER IZETA,
ENRIQUE
CALVO,
AND LUIS ENJUANES
4.4
Processing of the
Replicase
of
Murine
Coronavirus:
Papain-
like Proteinase
2
(PLP2)
Acts to Generate
ρ
150
and p44.
267
AMORNRAT KANJANAHALUETHAI AND SUSAN
С
BAKER
4.5
Comparison of
Replicase
Localization in Different Types of Mouse Hepatitis Virus
(MHV)-Infected Cells.
275
RAINER GOSERT,
AMORNRAT KANJANAHALUETHAI,
DENISE
EGGER,
KURT BIENZ, AND SUSAN
С
BAKER
4.6
Exploiting
DNA
Immunization to Generate Polyclonal Antisera to
Coronavirus
Replicase
Proteins.
283
SUSAN
С
BAKER, AMORNRAT KANJANAHALUETHAI, NATHAN M. SHERER,
DAVID D. AXTELL, AND JENNIFER J. SCHILLER.
4.7
Further Identification and Characterization of Products Processed from the
Coronavirus
Avian Infectious Bronchitis Virus (IBV) la Polyprotein by me
ЗС-ііке
Proteinase.
291
LISA F. P. NG, H. Y. XU, AND D. X. LIU
5.
Immunology and vaccine development
5.1
CD8
Τ
Cell Mediated Immunity to Neurotropic MHV Infection.
299
CORNELIA
С
BERGMANN,
NORMAN
W.
MARTEN, DAVID R. HINTON,
BEATRIZ
PARRA,
AND STEPHEN A. STOHLMAN
5.2
Coronavirus
Derived Expression Systems: Progress And Problems.
309
LUIS ENJUANES, ISABEL SOLA, FERNANDO ALMAZAN,
ANDER
IZETA,
JOSE M. GONZALEZ, AND
SARA ALONSO
5.3
The CXC Chemokines IP-10 and
Mig
are Essential in Host Defense Following Infection
with a Neurotropic
Coronavirus.
323
M. T.
LIU,
В.
P. CHEN, P. OERTEL, M. J. BUCHMEIER, T. A. HAMILTON,
D. A. ARMSTRONG, AND T.
E. LANE
5.4
Regulation of Matrix Metalloproteinase (MMP) and Tissue Inhibitor of Matrix
Metalloproteinase
(TIMP)
Genes During JHMV Infection of the Central Nervous System.
329
JIEHAO ZHOU, STEPHEN A. STOHLMAN, NORMAN W. MARTEN, AND
DAVID R. HINTON
5.5
IFN
-γ
Secreted by Virus-Specific CD8
Τ
Cells Contribute to CNS Viral Clearance.
335
BEATRIZ PARRA,
CORNELIA
С.
BERGMANN,
DAVID
R.
HINTON,
ROSCOE
ATKINSON, AND STEPHEN A. STOHLMAN
5.6
The Role of CD4 and CD8
T
Cells in MHV-JHM-Induced Demyelination.
341
GREGORY F. WU, AJAI A. DANDEKAR, LECIA PEWE, AND STANLEY PERLMAN
Contents xiii
5.7
Acute
CNS
Infection
is Insufficient to Mediate Chronic
Τ
Cell Retention.
349
NORMAN W. MARTEN, MAUREEN HOHMAN, STEPHEN A. STOHLMAN,
ROSCOE D. ATKINSON, DAVID R. HINTON, AND CORNELIA
С
BERGMANN
5.8
Generation from Multiple Sclerosis Patients of
Long-Term
Т
-Cell
Clones that are
Activated by both Human
Coronavirus
and
Myelin
Antigens.
355
ANNIE BOUCHER,
FRANÇOIS
DENIS, PIERRE DUQUETTE, AND PIERRE J.
TALBOT
5.9
The Role of
В
Cells in Mouse Hepatitis Virus Infection and Pathology.
363
AMY E. MATTHEWS, SUSAN R. WEISS, EHUD
LAVI,
MARK SHLOMCHIK, AND
YVONNE PATERSON
5.10
В
Cell Mediated Lysis of JHMV Infected Targets.
369
BEATRIZ
PARRA,
SHAWN MORALES, RAMACHRISTNA CHANDRAN, AND
STEPHEN A. STOHLMAN
5.11
Polyclonal Activation of
В
Cells by
Lactate
Dehydrogenase-E
le
vating
Virus is Mediated
by N-Glycans on the Short Ectodomain of the Primary Envelope Glycoprotein.
375
PETER
G.W. PLAGEMANN,
QUENTIN
A. JONES, AND WILLIAM A. CAFRUNY
5.12
Influence of Changes in the Population of Target Cells and Appearance of Specific
Antibodies on the Replication of Porcine Reproductive and Respiratory Syndrome
Viras
in the Lungs of Pigs.
385
H.J. NAUWYNCK,
G.G.
LABARQUE, K. VAN REETH, AND
M.B. PENSAERT
5.13
Monoclonal Antibody Directed against a Membranous Protein of MARC-145 Cells
Blocks Infection by PRRSV. 395
DOMINIC THERRIEN AND SERGE
DEA
5.14
Detection of Antibodies to the Nucleocapsid Protein of PRRS Virus by a Competitive
ELISA. 401
SERGE
DEA,
LOUISE WILSON, DOMINIC THERRIEN, AND
ESTELA
CORNAGLIA
5.15
Enhancement of Defective
RNA
Expression Vectors as Potential Vaccine Delivery
Systems for Avian Infectious Bronchitis Virus.
407
BRIAN DOVE, KATHY SHAW, JULIAN HISCOX, DAVID CAVANAGH, AND
PAUL
BRITTON
5.16
A Virus-Neutralising Monoclonal Antibody Expressed in the Milk of Transgenic Mice.
411
A.F.
KOLB,
J.
WEBSTER, C.B.A. WHITELAW, AND S.G. SIDDELL
6.
Replication:
RNA
synthesis
6.1
Nidovirus Genome Replication and Subgenomic mRNA Synthesis. Pathways
Followed and
Cis-
Acting Elements Required. 415
DAVID A. BRIAN
6.2
Regulation of Mouse Hepatitis
Viras RNA
Synthesis by Heterogeneous Nuclear
Ribonucleoprotein
Al.
STEPHANIE T.
ЅШ,
PEIYONG HUANG, HSIN-PAI LI, AND MICHAEL
M. C
LAI
6.3
Role of hnRNP
Al
in
Coronavirus RNA
Synthesis. 437
XUMING ZHANG, CHRISTOPHER LYLE, YICHENG WANG, AND LIN
ZENG
6.4
Expression of Transcriptional Units using Transmissible Gastroenteritis
Coronavirus
Derived Minigenomes and Full-length cDNA Clones.
^41
ISABEL SOLA,
SARA ALONSO,
CARLOS SANCHEZ, J. MANUEL SANCHEZ-
MORGADO, AND LUIS ENJUANES
xiv Contents
6.5 Identification
of the Mutations Responsible for the Phenotype of Three MHV
RNA-negative ts Mutants.
453
S. SIDDELL, D. SAWICKI, Y. MEYER, V.
THIEL.
AND S. SAWICKJ
6.6
MHV Subgenomic Negative Strand Function.
459
BARIC, R. S., K. M. CURTIS, AND B. YOUNT
6.7
Requirement of the Poly(A) Tail in
Coronavirus
Genome Replication.
467
JEANNIE F.
SPAGNOLO
AND BRENDA G. HOGUE
6.8
A Simple Strategy to Assemble Infectious
RNA
and
DNA
Clones.
475
KRISTOPHER
M
CURTIS, BOYD YOUNT, AND RALPH S. BARIC
6.9
Chromatography of Mouse Hepatitis Virus
Replicative
Intermediate and
Replicative
Form
RNA.
483
DOROTHEA L. SAWICKI AND STANLEY G. SAWICKI
6.10
Mouse Hepatitis Virus Minus-strand Templates are Unstable and Turnover During
Viral Replication.
491
TAO WANG AND STANLEY G. SAWICKJ
6.11
Mutagenesis of the 3 42 Nucleotide Host Protein Binding Element of the MHV 3 UTR.
499
REED F. JOHNSON AND JULIAN L. LEIBOWITZ
6.12
Use of an Infectious Bronchitis Virus D-RNA as an
RNA
Vector.
507
PAUL
BRITTON.
KATHLEEN STIRRUPS, KEVIN
DALTON,
KATHLEEN SHAW,
SHARON EVANS, BENJAMIN
NEUMAN,
BRIAN DOVE, ROSA
CASAIS,
AND
DAVE CAVANAGH
6.13
Use of Defective RNAs Containing Reporter Genes to Investigate Targeted
Recombination for Avian Infectious Bronchitis Virus.
513
BENJAMIN
NEUMAN. DAVE
CAVANAGH, AND PAUL
BRITTON
6.14
Characterization of an Arterivirus Defective Interfering
RNA.
Replication and
Homologous Recombination.
519
RICHARD
MOLENKAMP,
BABETTE
CD. ROZIER, SOPHIE
GREVE,
WILLY J.M.
SPAAN,
AND ERIC J.
SNIJDER
6.15
Packaged
Heteroclite
Subgenomic RNAs of PRRSV.
527
SHISHAN YUAN. MICHAEL P. MURTAUGH, AND KAY
S. FAABERG
6 16
Cloning of a Transmissible Gastroenteritis
Coronavirus
Full-Length cDNA.
533
JOSE M
GONZALEZ. FERNANDO ALMAZAN,
ZOLTÁN PÉNZES,
ENRIQUE
CALVO.
AND
LUIS EN JUANES
6.17
Functional IBV Mimgenomes Generated by
Recombinant
Fowl Pox Viruses for use in
IBV-Targeted Recombination Studies.
537
SHARON EVANS. DAVID CAVANAGH, AND PAUL
BRITTON
6.18
Heterogeneity of Subgenomic mRNAs of a Mutant Mouse Hepatitis Virus Strain JHM2C.
541
XL MING ZHANG
6.19
Mapping of the RNA-Binding Domain of the Porcine Reproductive and Respiratory
Syndrome Virus Nucleocapsid Protein.
547
GIRISH
С
DAGINAKATTE AND SANJAY KAPIL
6.20
Sequences Required for Replication and Packaging of IBV
RNA.
553
KEVIN
DALTON.
ROSA
CASAIS.
KATHLEEN SHAW, KATHLEEN STIRRUPS,
SHARON EVANS.
Τ
DAVID
К
BROWN, PAUL
BRITTON.
AND DAVE CAVANAGH
Contents xv
6.21 Characterization
of Temperature-sensitive (ts) Mutants of
Coronavirus
Infectious
Bronchitis Virus (IBV).
557
SHUO SHEN AND DING XIANG LIU
6.22
Identification of a Noncanonical Transcription Initiation Site for Transcription of a
Subgenomic mRNA of Mouse Hepatitis Virus.
563
XUMING ZHANG
7.
Replication: viral assembly
7.1
Infectious Bronchitis Virus Envelope Protein Targeting: Impiications for Virus Assembly.
571
EMILY CORSE AND CAROLYN
E. MACHAMER
7.2
Characterization of Nucleocapsid-M Protein Interaction in
Murine
Coronavirus.
577
KRISHNA NARAYANAN AND
ЅН1Ш1
MAKJNO
7.3
Production, Characterization, and Uses of Monoclonal Antibodies against Porcine
Reproductive and Respiratory Syndrome Virus
3
Untranslated Region and
Nucleoprotein
RNA
Binding Proteins.
583
KUMAR SHANMUKHAPPA, FAHAD MAJHDI, AND SANJAY KAPIL
7.4
The Membrane
M
Protein of the Transmissible Gastroenteritis
Coronavirus
Binds to
the Internal Core through the Carboxy-Terminus.
589
DAVID ESCORS, JAVIER ORTEGO, AND LUIS ENJUANES
7.5
Physical Interaction between the Membrane (M) and Envelope (E) Proteins of the
Coronavirus
Avian Infectious Bronchitis Virus (IBV).
595
K. P.
LIM,
H. Y.
XU, AND
D.
X. LIU
7.6
Mitochondnal Aconitase Binds to the
З
-UTR
of Mouse Hepatitis Virus
RNA.
603
SANTOSH K.
NANDA
AND JULIAN L. LEIBOWITZ
8.
Virus-cell interaction
8.1
The Cell Biology of
Coronavirus
Infection.
609
ERIK PRENTICE AND MARK R. DENISON
8.2
Induction of Apoptosis in
Murine
Coronavirus-Infected 17C1-1 Cells.
615
CHUN-JEN CHEN, SUNGWHAN AN, AND SHINJI MAKJNO
8.3
Specific Cleavage of 28S Ribosomal
RNA
in
Murine
Coronavirus-Infected Cells
621
SANGEETA BANERJEE, SUNGWHAN AN, AND SHINJI MAKJNO
8.4
Homotypic Interactions of the Nucleocapsid Protein of Porcine Reproductive and
Respiratory Syndrome Virus (PRRSV). 6~
DONGWAN YOO AND SARAH WOOTTON
8.5
Interactions of Cellular Proteins with the Positive Strand of
3
-Untranslated Region
RNA
and the Nucleoprotein Gene of Porcine Reproductive and
Respiratory
Syndrome Virus
633
FAHAD MAJHAD I AND SANJAY KAPIL
8-6
Cloning and identification of MARC-
145
Cell Proteins Binding to
3
UTR
and Partial
Nucleoprotein Gene of Porcine Reproductive and Respiratory Syndrome Virus.
641
KUMAR SHANMUKHAPPA AND SANJAY KAPIL
8-7
Identification of Cell Proteins that Bind to the SHFV
3
(-WCR. M:
TARONNA R.
MAINES
AND
MARGO
A. BRINTON
xvi
Contents
8.8
MHV-A59
Gene
1
Proteins are Associated with Two Distinct Membrane Populations.
655
MARK R. DENISON AND AMY
С
SIMS
8.9
Differential Expression of Tumor Necrosis Factor in Primary Glial Cell Cultures
Infected with Demyelinating and Non-Demyelinating MHVs.
663
LI FU,
JAYASRI DAS
SARMA,
AND EHUD
LAVI
8.10
Infectious Bronchitis Virus Nucleocapsid Protein Interactions with the
3
Untranslated
Region of Genomic
RNA
Depend on Uridylate Bases.
669
ELLEN W. COLLISSON, MINGLONG ZHOU, PAUL GERSHON, AND JYOTHI
JAYARAM
8.11
Induction of Apoptosis in MRC-5, Diploid Human Fetal Lung Cells after Infection
with Human
Coronavirus OC43.
677
ARLENE R. COLLINS
8.12
Effect of Heparin on the Entry of Porcine Reproductive and Respiratory Syndrome
Virus into Alveolar
Macrophages.
683
N.
VANDERHEIJDEN, P. DELPUTTE,
H. NAUWYNCK,
AND
M. PENSAERT
8.13
Apoptosis in the Lungs of Pigs During an Infection with a European Strain of Porcine
Reproductive and Respiratory Syndrome Virus.
691
G.G.
LABARQUE, H.J. NAUWYNCK, K. VAN REETH. AND M.B. PENSAERT
PARTICIPANTS
699
INDEX
727
|
any_adam_object | 1 |
building | Verbundindex |
bvnumber | BV014150144 |
ctrlnum | (OCoLC)216723970 (DE-599)BVBBV014150144 |
format | Book |
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genre | (DE-588)1071861417 Konferenzschrift 2000 Lake Harmony Pa. gnd-content |
genre_facet | Konferenzschrift 2000 Lake Harmony Pa. |
id | DE-604.BV014150144 |
illustrated | Illustrated |
indexdate | 2024-07-09T18:58:33Z |
institution | BVB |
isbn | 0306466341 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-009697819 |
oclc_num | 216723970 |
open_access_boolean | |
owner | DE-12 |
owner_facet | DE-12 |
physical | XVI, 728 S. Ill., graph. Darst. |
publishDate | 2001 |
publishDateSearch | 2001 |
publishDateSort | 2001 |
publisher | Kluwer Acad. |
record_format | marc |
series | Advances in experimental medicine and biology |
series2 | Advances in experimental medicine and biology |
spelling | The nidoviruses (coronaviruses and arteriviruses) ; [proceedings of the VIII International Symposium on Nidoviruses, held May 20 - 25, 2000, in Lake Harmony, Pennsylvania] ed. by Ehud Lavi ... New York Kluwer Acad. 2001 XVI, 728 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Advances in experimental medicine and biology 494 Nidovirales (DE-588)4638626-9 gnd rswk-swf Coronaviren (DE-588)4276392-7 gnd rswk-swf Infektionskrankheit (DE-588)4026879-2 gnd rswk-swf (DE-588)1071861417 Konferenzschrift 2000 Lake Harmony Pa. gnd-content Coronaviren (DE-588)4276392-7 s Infektionskrankheit (DE-588)4026879-2 s DE-604 Nidovirales (DE-588)4638626-9 s Lavi, Ehud Sonstige oth Advances in experimental medicine and biology 494 (DE-604)BV000003102 494 Digitalisierung TU Muenchen application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009697819&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | The nidoviruses (coronaviruses and arteriviruses) ; [proceedings of the VIII International Symposium on Nidoviruses, held May 20 - 25, 2000, in Lake Harmony, Pennsylvania] Advances in experimental medicine and biology Nidovirales (DE-588)4638626-9 gnd Coronaviren (DE-588)4276392-7 gnd Infektionskrankheit (DE-588)4026879-2 gnd |
subject_GND | (DE-588)4638626-9 (DE-588)4276392-7 (DE-588)4026879-2 (DE-588)1071861417 |
title | The nidoviruses (coronaviruses and arteriviruses) ; [proceedings of the VIII International Symposium on Nidoviruses, held May 20 - 25, 2000, in Lake Harmony, Pennsylvania] |
title_auth | The nidoviruses (coronaviruses and arteriviruses) ; [proceedings of the VIII International Symposium on Nidoviruses, held May 20 - 25, 2000, in Lake Harmony, Pennsylvania] |
title_exact_search | The nidoviruses (coronaviruses and arteriviruses) ; [proceedings of the VIII International Symposium on Nidoviruses, held May 20 - 25, 2000, in Lake Harmony, Pennsylvania] |
title_full | The nidoviruses (coronaviruses and arteriviruses) ; [proceedings of the VIII International Symposium on Nidoviruses, held May 20 - 25, 2000, in Lake Harmony, Pennsylvania] ed. by Ehud Lavi ... |
title_fullStr | The nidoviruses (coronaviruses and arteriviruses) ; [proceedings of the VIII International Symposium on Nidoviruses, held May 20 - 25, 2000, in Lake Harmony, Pennsylvania] ed. by Ehud Lavi ... |
title_full_unstemmed | The nidoviruses (coronaviruses and arteriviruses) ; [proceedings of the VIII International Symposium on Nidoviruses, held May 20 - 25, 2000, in Lake Harmony, Pennsylvania] ed. by Ehud Lavi ... |
title_short | The nidoviruses |
title_sort | the nidoviruses coronaviruses and arteriviruses proceedings of the viii international symposium on nidoviruses held may 20 25 2000 in lake harmony pennsylvania |
title_sub | (coronaviruses and arteriviruses) ; [proceedings of the VIII International Symposium on Nidoviruses, held May 20 - 25, 2000, in Lake Harmony, Pennsylvania] |
topic | Nidovirales (DE-588)4638626-9 gnd Coronaviren (DE-588)4276392-7 gnd Infektionskrankheit (DE-588)4026879-2 gnd |
topic_facet | Nidovirales Coronaviren Infektionskrankheit Konferenzschrift 2000 Lake Harmony Pa. |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009697819&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV000003102 |
work_keys_str_mv | AT laviehud thenidovirusescoronavirusesandarterivirusesproceedingsoftheviiiinternationalsymposiumonnidovirusesheldmay20252000inlakeharmonypennsylvania |