Abstract
Utilizing negative-stain electron microscopy in which similar concentrations of reovirus types 1 and 3 are incubated with a carbon support film containing chick brain, rabbit brain, or HeLa cell microtubules, 81% of the type 1 and 56% of type 3 exhibited an association with the apparent "edge" of the microtubule. This implies that there is a high level of specific affinity for type 1 but not for type 3 to microtubules, since it has previously been determined that only 50% of randomly associated particles would be associated with the edge. The high edge binding of reovirus type 1 is virtually independent of the origin of microtubule, or of whether microtubules or virus has been initially adhered to the support film. On the other hand, reovirus type 1-specific antiserum reduced the edge binding or reovirus type 1 to 45%, whereas type 3 specific antiserum caused no less (within the variability of the assay) of the edge binding of reovirus type 1 to microtubules (76% edge bound). High edge binding of reovirus type 1 to microtubules is correlated with the presence of type 1 or sigma 1 polypeptide. This minor outer capsid polypeptide is encoded in the S1 double-stranded RNA segment and is the viral hemagglutinin and neutralization antigen. Recombinant reovirus clones containing the S1 double-stranded RNA segment of type 1 (80 and 802) show about 85% edge binding, as compared to a value of 42% for clones and the S1 gene of type 3 (204. Electron microscopy of purified reovirus types 1 and 3 by negative staining reveals that type 1 and 802 capsomers are distinctly visualized, whereas those of type 3 and 204 appear diffuse. Thus, the greater in vitro binding of type 1 to microtubules may reflect an increased accessibility of certain of its outer capsomers, and thereby, sigma 1 polypeptides to microtubules. Examination of its outer sections of reovirus type 1- and 3-infected cells at 24 to 48 h postinfection at 31 degrees C showed that about eight times as many viral factoris in type 1-infected cells exhibited an extensive association of virus particles with microtubules, as compared to viral factories of type 3-infected cells. Thus, both in vivo and in vitro there appears to be a greater specificity for the association of reovirus type 1 particles with microtubules, as compared to reovirus type 3 particles.
MeSH Terms
Animals
Brain/ultrastructure
Chickens
HeLa Cells/ultrastructure
Humans
Mammalian orthoreovirus 3/metabolism
Microtubules/metabolism
Protein Binding
Rabbits
Reoviridae/metabolism
Viral Proteins/metabolism
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Babiss L E
Luftig R B
Weatherbee J A
Weihing R R
Ray U R
Fields B N
References (29)
29 references, click to expand
-
Molecular basis of reovirus virulence: role of the S1 gene.
Proc Natl Acad Sci U S A. 1977 Dec;74(12):5744-8
PMID: 271999
-
Isolation and preliminary characterization of 10-nm filaments from baby hamster kidney (BHK-21) cells.
Proc Natl Acad Sci U S A. 1977 Jun;74(6):2422-6
PMID: 329284
-
Increased visualization of microtubules by an improved fixation procedure.
J Histochem Cytochem. 1977 Mar;25(3):175-87
PMID: 402414
-
Binding of adenovirus to microtubules. II. Depletion of high-molecular-weight microtubule-associated protein content reduces specificity of in vitro binding.
J Virol. 1977 Feb;21(2):732-42
PMID: 556783
-
Identification of the gene coding for the hemagglutinin of reovirus.
Virology. 1978 May 15;86(2):581-4
PMID: 566483
-
A genetic map of reovirus. 1. Correlation of genome RNAs between serotypes 1, 2, and 3.
Virology. 1978 Jan;84(1):63-74
PMID: 619493
-
In vitro polymerization of microtubules from HeLa cells.
J Cell Biol. 1978 Jul;78(1):47-57
PMID: 670297
-
The nature of the polypeptide encoded by each of the 10 double-stranded RNA segments of reovirus type 3.
Virology. 1978 Sep;89(2):578-93
PMID: 716218
-
Genetics of reovirus: identification of the ds RNA segments encoding the polypeptides of the mu and sigma size classes.
Virology. 1978 Sep;89(2):594-604
PMID: 716219
-
Genome RNAs and polypeptides of reovirus serotypes 1, 2, and 3.
J Virol. 1977 Jun;22(3):726-33
PMID: 875135
-
Genetic analysis of adenovirus type 2. VII. Cleavage-modified affinity for DNA of internal virion proteins.
Virology. 1977 Jul 1;80(1):83-97
PMID: 878317
-
Neutralization of reovirus: the gene responsible for the neutralization antigen.
J Exp Med. 1977 Nov 1;146(5):1305-10
PMID: 925604
-
Association of high-molecular-weight proteins with microtubules and their role in microtubule assembly in vitro.
Proc Natl Acad Sci U S A. 1975 Jul;72(7):2696-700
PMID: 1058484
-
Synthesis of all the gene products of the reovirus genome in vivo and in vitro.
Cell. 1975 Feb;4(2):173-80
PMID: 1125978
-
Ultrastructural localization of the high molecular weight proteins associated with in vitro-assembled brain microtubules.
J Cell Biol. 1975 Apr;65(1):237-41
PMID: 1127013
-
Adenovirus binds to rat brain microtubules in vitro.
J Virol. 1975 Sep;16(3):696-706
PMID: 1159898
-
An ultrastructural study of virions and cores of reovirus type 3.
Virology. 1972 Apr;48(1):170-81
PMID: 4111673
-
RNA polymerase activity in purified reoviruses.
Proc Natl Acad Sci U S A. 1968 Dec;61(4):1462-9
PMID: 4179180
-
Early events in the interaction of adenoviruses with HeLa cells. IV. Association with microtubules and the nuclear pore complex during vectorial movement of the inoculum.
Virology. 1973 Dec;56(2):465-83
PMID: 4271287
-
Polypeptide components of virions, top component and cores of reovirus type 3.
Virology. 1969 Dec;39(4):791-810
PMID: 4311639
-
The molecular biology of Reovirus.
J Cell Physiol. 1970 Dec;76(3):289-301
PMID: 5502351
-
Transcription in vitro by reovirus-associated ribonucleic acid-dependent polymerase.
J Virol. 1970 Jul;6(1):1-11
PMID: 5529847
-
Determination of gene product positions in bacteriophage T4 by specific antibody association.
J Mol Biol. 1970 Jul 28;51(2):411-21
PMID: 5530395
-
Separation of ten reovirus genome segments by polyacrylamide gel electrophoresis.
J Virol. 1968 Oct;2(10):986-91
PMID: 5723704
-
ASSOCIATION BETWEEN THE SPINDLE APPARATUS AND REOVIRUS.
Proc Natl Acad Sci U S A. 1963 Aug;50:268-75
PMID: 14060643
-
THE ROLE OF THE MITOTIC APPARATUS IN THE INTRACELLULAR LOCATION OF REOVIRUS ANTIGEN.
J Immunol. 1963 Apr;90:554-60
PMID: 14082017
-
EFFECT OF ANTIMITOTIC AGENTS ON INTRACELLULAR REOVIRUS ANTIGEN.
Cancer Res. 1964 Nov;24:1826-33
PMID: 14230929
-
THE UPTAKE AND DEVELOPMENT OF REOVIRUS IN STRAIN L CELLS FOLLOWED WITH LABELED VIRAL RIBONUCLEIC ACID AND FERRITIN-ANTIBODY CONJUGATES.
Virology. 1965 Feb;25:193-211
PMID: 14297208
-
The penetration of reovirus RNA and initiation of its genetic function in L-strain fibroblasts.
J Cell Biol. 1968 Jan;36(1):197-230
PMID: 19806702