Abstract
A fraction which contained the membrane-bound cowpea mosaic virus RNA replicase was isolated from cowpea mosaic virus-infected cowpea leaves. The replicase activity appeared on day 1 after inoculation, then increased to reach a maximal on day 4. The increase in enzyme activity preceded the most-rapid virus multiplication. The membrane-bound replicase activity was almost completely insensitive to actinomycin D and DNase. The corresponding fraction from healthy leaves had no RNA-dependent RNA polymerase activity. The viral RNA synthesis in vitro proceeded linearly for 20 min and required all four ribonucleoside triphosphates and Mg(2+) ions. Mn(2+) was a poor substitute for Mg(2+). The reaction was optimal at pH 8.2. During the whole period of RNA synthesis the in vitro synthesized RNA was at least 70% resistant against RNase in 2 x SSC (0.15 M NaCl plus 0.015 M sodium citrate), but completely digestable by RNase in 0.1 x SSC. Analysis of the products by sucrose gradient centrifugation followed by treatment of separate fractions with RNase demonstrated that both single-and double-stranded RNA were present. Double-stranded RNA sedimented at about 20S, with a shoulder at 16S to 17S. A minor part of the double-stranded RNA sedimented below 10S. Single-stranded RNA sedimented with the same rate as the two viral RNAs, 26S and 34S.
MeSH Terms
Cell Membrane/enzymology
Cell-Free System
Centrifugation, Density Gradient
DNA-Directed RNA Polymerases/isolation & purification,metabolism
Dactinomycin/pharmacology
Deoxyribonucleases/pharmacology
Hydrogen-Ion Concentration
Magnesium/metabolism
Manganese/metabolism
Mosaic Viruses/growth & development,metabolism
Plant Viruses/metabolism
Plants/enzymology
RNA, Viral/biosynthesis
Ribonucleases
Ribonucleotides/metabolism
Tritium
Uracil Nucleotides/metabolism
Virus Replication
Chemicals
RNA, Viral
Ribonucleotides
Uracil Nucleotides
Tritium
Dactinomycin
Manganese
DNA-Directed RNA Polymerases
Deoxyribonucleases
Ribonucleases
Magnesium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Zabel P
Weenen-Swaans H
van Kammen A
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