| Literature DB >> 12726734 |
Konduru Krishnamurthy1, Marty Heppler, Ruchira Mitra, Elison Blancaflor, Mark Payton, Richard S Nelson, Jeanmarie Verchot-Lubicz.
Abstract
Potato virus X (PVX) TGBp3 is required for virus cell-to-cell movement. Cell-to-cell movement of TGBp3 was studied using biolistic bombardment of plasmids expressing GFP:TGBp3. TGBp3 moves between cells in Nicotiana benthamiana, but requires TGBp1 to move in N. tabacum leaves. In tobacco leaves GFP:TGBp3 accumulated in a pattern resembling the endoplasmic reticulum (ER). To determine if the ER network is important for GFP:TGBp3 and for PVX cell-to-cell movement, a single mutation inhibiting membrane binding of TGBp3 was introduced into GFP:TGBp3 and into PVX. This mutation disrupted movement of GFP:TGBp3 and PVX. Brefeldin A, which disrupts the ER network, also inhibited GFP:TGBp3 movement in both Nicotiana species. Two deletion mutations, that do not affect membrane binding, hindered GFP:TGBp3 and PVX cell-to-cell movement. Plasmids expressing GFP:TGBp2 and GFP:TGBp3 were bombarded to several other PVX hosts and neither protein moved between adjacent cells. In most hosts, TGBp2 or TGBp3 cannot move cell-to-cell.Entities:
Keywords: NASA Discipline Plant Biology; NASA Program Fundamental Space Biology; Non-NASA Center
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Year: 2003 PMID: 12726734 DOI: 10.1016/s0042-6822(02)00102-2
Source DB: PubMed Journal: Virology ISSN: 0042-6822 Impact factor: 3.616