Literature DB >> 10796018

P42 movement protein of Beet necrotic yellow vein virus is targeted by the movement proteins P13 and P15 to punctate bodies associated with plasmodesmata.

M Erhardt1, M Morant, C Ritzenthaler, C Stussi-Garaud, H Guilley, K Richards, G Jonard, S Bouzoubaa, D Gilmer.   

Abstract

Cell-to-cell movement of Beet necrotic yellow vein virus (BNYVV) is driven by a set of three movement proteins--P42, P13, and P15--organized into a triple gene block (TGB) on viral RNA 2. The first TGB protein, P42, has been fused to the green fluorescent protein (GFP) and fusion proteins between P42 and GFP were expressed from a BNYVV RNA 3-based replicon during virus infection. GFP-P42, in which the GFP was fused to the P42 N terminus, could drive viral cell-to-cell movement when the copy of the P42 gene on RNA 2 was disabled but the C-terminal fusion P42-GFP could not. Confocal microscopy of epidermal cells of Chenopodium quinoa near the leading edge of the infection revealed that GFP-P42 localized to punctate bodies apposed to the cell wall whereas free GFP, expressed from the replicon, was distributed uniformly throughout the cytoplasm. The punctate bodies sometimes appeared to traverse the cell wall or to form pairs of disconnected bodies on each side. The punctate bodies co-localized with callose, indicating that they are associated with plasmodesmata-rich regions such as pit fields. Point mutations in P42 that inhibited its ability to drive cell-to-cell movement also inhibited GFP-P42 punctate body formation. GFP-P42 punctate body formation was dependent on expression of P13 and P15 during the infection, indicating that these proteins act together or sequentially to localize P42 to the plasmodesmata.

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Year:  2000        PMID: 10796018     DOI: 10.1094/MPMI.2000.13.5.520

Source DB:  PubMed          Journal:  Mol Plant Microbe Interact        ISSN: 0894-0282            Impact factor:   4.171


  12 in total

1.  Intracellular targeting of a hordeiviral membrane-spanning movement protein: sequence requirements and involvement of an unconventional mechanism.

Authors:  Mikhail V Schepetilnikov; Andrey G Solovyev; Elena N Gorshkova; Joachim Schiemann; Alexey I Prokhnevsky; Valerian V Dolja; Sergey Y Morozov
Journal:  J Virol       Date:  2007-11-21       Impact factor: 5.103

2.  Molecular basis for mitochondrial localization of viral particles during beet necrotic yellow vein virus infection.

Authors:  Clarisse Valentin; Patrice Dunoyer; Guillaume Vetter; Catherine Schalk; André Dietrich; Salah Bouzoubaa
Journal:  J Virol       Date:  2005-08       Impact factor: 5.103

3.  Rapid screening for dominant negative mutations in the beet necrotic yellow vein virus triple gene block proteins P13 and P15 using a viral replicon.

Authors:  E Lauber; L Janssens; G Weyens; G Jonard; K E Richards; M Lefèbvre; H Guilley
Journal:  Transgenic Res       Date:  2001-08       Impact factor: 2.788

4.  The potato virus X TGBp2 movement protein associates with endoplasmic reticulum-derived vesicles during virus infection.

Authors:  Ho-Jong Ju; Timmy D Samuels; Yuh-Shuh Wang; Elison Blancaflor; Mark Payton; Ruchira Mitra; Konduru Krishnamurthy; Richard S Nelson; Jeanmarie Verchot-Lubicz
Journal:  Plant Physiol       Date:  2005-07-29       Impact factor: 8.340

5.  Interactions of the TGB1 protein during cell-to-cell movement of Barley stripe mosaic virus.

Authors:  D M Lawrence; A O Jackson
Journal:  J Virol       Date:  2001-09       Impact factor: 5.103

6.  Two plant-viral movement proteins traffic in the endocytic recycling pathway.

Authors:  Sophie Haupt; Graham H Cowan; Angelika Ziegler; Alison G Roberts; Karl J Oparka; Lesley Torrance
Journal:  Plant Cell       Date:  2004-12-17       Impact factor: 11.277

7.  Subcellular localization of the barley stripe mosaic virus triple gene block proteins.

Authors:  Hyoun-Sub Lim; Jennifer N Bragg; Uma Ganesan; Steven Ruzin; Denise Schichnes; Mi Yeon Lee; Anna Maria Vaira; Ki Hyun Ryu; John Hammond; Andrew O Jackson
Journal:  J Virol       Date:  2009-07-01       Impact factor: 5.103

8.  Replication and trafficking of a plant virus are coupled at the entrances of plasmodesmata.

Authors:  Jens Tilsner; Olga Linnik; Marion Louveaux; Ian M Roberts; Sean N Chapman; Karl J Oparka
Journal:  J Cell Biol       Date:  2013-06-24       Impact factor: 10.539

Review 9.  Cellular pathways for viral transport through plasmodesmata.

Authors:  Annette Niehl; Manfred Heinlein
Journal:  Protoplasma       Date:  2010-12-02       Impact factor: 3.186

Review 10.  Genome Editing for Plasmodesmal Biology.

Authors:  Arya Bagus Boedi Iswanto; Rahul Mahadev Shelake; Minh Huy Vu; Jae-Yean Kim; Sang Hee Kim
Journal:  Front Plant Sci       Date:  2021-06-02       Impact factor: 5.753

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