The C-terminal 33 amino acids of the cucumber mosaic virus 3a protein affect virus movement, RNA binding and inhibition of infection and translation

Sang Hyon Kim, Natalia O Kalinina, Igor Andreev, Eugene V Ryabov, Alexander G Fitzgerald, Michael E Taliansky, Peter Palukaitis

Research output: Contribution to journalArticlepeer-review

48 Citations (Scopus)

Abstract

The capsid protein (CP) of Cucumber mosaic virus (CMV) is required for cell-to-cell movement, mediated by the 3a movement protein (MP). Deletion of the C-terminal 33 amino acids of the CMV 3a MP (in the mutant designated 3aDeltaC33 MP) resulted in CP-independent cell-to-cell movement, but not long-distance movement. RNA-binding studies done in vitro using isolated bacterially expressed MP showed that the 3aDeltaC33 MP bound RNA more strongly, with fewer regions sensitive to RNase and formed cooperatively bound complexes at lower ratios of protein : RNA than the wild-type (wt) 3a MP. Analysis of the architecture of the complexes by atomic force microscopy showed that the wt 3a MP formed a single type of complex with RNA, resembling beads on a string. By contrast, the 3aDeltaC33 MP formed several types of complexes, including complexes with virtually no MP bound or thicker layers of MP bound to the RNA. Assays showed that protein-RNA complexes containing high levels of either MP inhibited the infectivity and in vitro translatability of viral RNAs. The 3aDeltaC33 MP inhibited these processes at lower ratios of protein : RNA than the wt 3a MP, consistent with its stronger binding properties. The apparent contradiction between these inhibition data and the CP-independent cell-to-cell movement of CMV expressing the 3aDeltaC33 MP is discussed.

Original languageEnglish
Pages (from-to)221-30
Number of pages10
JournalJournal of General Virology
Volume85
Issue numberPt 1
DOIs
Publication statusPublished - Jan 2004

Keywords

  • Chenopodium
  • Cucumovirus
  • Microscopy, Atomic Force
  • Plant Diseases
  • Plant Leaves
  • Plant Viral Movement Proteins
  • Protein Biosynthesis
  • RNA, Viral
  • Sequence Deletion
  • Tobacco
  • Viral Proteins

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