Abstract
The cytoplasmic extracts of Ehrlich ascites tumor cells infected with (32)PO(4) and (3)H-leucine-labeled Sendai virus have been examined during the course of infection with respect to sedimentation behavior and buoyant densities of input virus radioactivity. It was found that (32)P and (3)H radioactivities were coincident, and, at 30 min after infection, the bulk of radioactivity was recovered in the polysome region of a sucrose gradient in the position of Sendai virus ribonucleoprotein (210S). The heterogeneity of radioactivity profiles appeared at 1 hr after infection and increased during 6 hr of incubation. The buoyant densities of input virus components were determined by banding in CsCl gradient. Here again the bulk of coincident (32)P and (3)H radioactivity at 30 min after infection banded at the same density as Sendai virus ribonucleoprotein (1.31 g/cm(3).) This component disappeared at 3 hr after infection, and (32)P and (3)H radioactivities were now found in components banded at densities 1.38, 1.41, 1.45, 1.49, and 1.55 g/cm(3). The results presented are consistent with the idea that virus ribonucleoprotein is retained in the cytoplasm of infected cells during at least 6 hr of incubation, being partly deproteinized in the course of infection. The nature of components which banded at rho = 1.41, 1.45, 1.49, and 1.55 as complexes of partly deproteinized ribonucleoprotein with ribosomes will be described in a separate paper.
MeSH Terms
Animals
Carcinoma, Ehrlich Tumor
Centrifugation, Density Gradient
Dactinomycin/pharmacology
Leucine/metabolism
Mice
Nucleoproteins/metabolism
Parainfluenza Virus 1, Human/metabolism
Phosphates/metabolism
Phosphorus Isotopes
RNA, Viral
Tritium
Uridine/metabolism
Viral Proteins/metabolism
Virus Replication
Chemicals
Nucleoproteins
Phosphates
Phosphorus Isotopes
RNA, Viral
Viral Proteins
Tritium
Dactinomycin
Leucine
Uridine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Bukrinskaya A G
Zhdanov V M
Vorkunova G K
References (15)
15 references, click to expand
-
The entry of myxoviruses into the cell.
Cold Spring Harb Symp Quant Biol. 1962;27:113-21
PMID: 13955208
-
EARLY STAGES OF NEWCASTLE DISEASE VIRUS-HELA CELL INTERACTION: AN ELECTRON MICROSCOPIC STUDY.
Virology. 1964 Jul;23:370-80
PMID: 14194131
-
Infective substructures of Sendai virus from infected Ehrlich ascites tumor cells.
J Virol. 1968 Jul;2(7):752-8
PMID: 4301995
-
The use of influenza virus labelled with radio-sulphur in studies of the early stages of the interaction of virus with the host cell.
J Hyg (Lond). 1957 Jun;55(2):290-7
PMID: 13439179
-
Isolation and properties of Newcastle disease virus nucleocapsid.
J Virol. 1968 Mar;2(3):248-55
PMID: 5742044
-
Use of formaldehyde fixation for studies of ribonucleoprotein particles by caesium chloride density-gradient centrifugation.
J Mol Biol. 1965 Dec;14(2):611-5
PMID: 5326415
-
The nucleic acid of Sendai virus and ribonucleic acid synthesis in cells infected by Sendai virus.
J Gen Virol. 1968 Jan;2(1):71-9
PMID: 4296360
-
Formation of noninfectious viral hemaggluinins in ascites tumor cells.
Virology. 1960 Jan;10:112-26
PMID: 13819128
-
Structure and development of viruses as observed in the electron microscope. 8. Entry of influenza virus.
J Virol. 1968 Sep;2(9):925-36
PMID: 5725323
-
Attachment and penetration of influenza virus.
Virology. 1962 Nov;18:489-93
PMID: 14024719
-
Isolation and structure of the nucleocapsid of HVJ.
Virology. 1968 Jul;35(3):445-57
PMID: 4298651
-
Structure and development of viruses as observed in the electron microscope. IX. Entry of parainfluenza I (Sendai) virus.
J Virol. 1968 Oct;2(10):1122-32
PMID: 4302016
-
Early stages of infection with Newcastle disease virus as revealed by electron microscopy.
Virology. 1962 Apr;16:506-9
PMID: 14477587
-
Isolation of Sendai virus RNA from infected cells by the method of thermic fractionation.
Biochim Biophys Acta. 1966 Apr 18;119(1):219-20
PMID: 4289672
-
Buoyant densities of cytoplasmic ribonucleoprotein particles of mammalian cells: distinctive character of ribosome subunits and the rapidly labeled components.
J Mol Biol. 1966 Apr;16(2):255-68
PMID: 5956031