A nuclear localization signal and a membrane association domain contribute to the cellular localization of the Tobacco mosaic virus 126-kDa replicase protein.

PubWeight™: 0.92‹?›

🔗 View Article (PMID 12359448)

Published in Virology on September 15, 2002

Authors

Antonia dos Reis Figueira1, Sheetal Golem, Sameer P Goregaoker, James N Culver

Author Affiliations

1: Department of Plant Pathology, Federal University of Lavras, C.P. 37, Lavras, Brazil, 37200.

Articles citing this

The tobacco mosaic virus 126-kilodalton protein, a constituent of the virus replication complex, alone or within the complex aligns with and traffics along microfilaments. Plant Physiol (2005) 1.39

Intracellular transport of plant viruses: finding the door out of the cell. Mol Plant (2011) 1.30

Differing requirements for actin and myosin by plant viruses for sustained intercellular movement. Proc Natl Acad Sci U S A (2009) 1.19

Interaction of the tobacco mosaic virus replicase protein with the Aux/IAA protein PAP1/IAA26 is associated with disease development. J Virol (2005) 1.07

Coat protein regulates formation of replication complexes during tobacco mosaic virus infection. Proc Natl Acad Sci U S A (2004) 1.07

Tobacco mosaic virus replicase-auxin/indole acetic acid protein interactions: reprogramming the auxin response pathway to enhance virus infection. J Virol (2007) 0.96

The cell biology of Tobacco mosaic virus replication and movement. Front Plant Sci (2013) 0.95

Interaction of the Tobacco mosaic virus replicase protein with a NAC domain transcription factor is associated with the suppression of systemic host defenses. J Virol (2009) 0.94

Evidence that insertion of Tomato ringspot nepovirus NTB-VPg protein in endoplasmic reticulum membranes is directed by two domains: a C-terminal transmembrane helix and an N-terminal amphipathic helix. J Virol (2005) 0.87

Hijack it, change it: how do plant viruses utilize the host secretory pathway for efficient viral replication and spread? Front Plant Sci (2013) 0.85

Myosins VIII and XI play distinct roles in reproduction and transport of tobacco mosaic virus. PLoS Pathog (2014) 0.83

A vicilin-like seed storage protein, PAP85, is involved in tobacco mosaic virus replication. J Virol (2013) 0.75

The Plant Cellular Systems for Plant Virus Movement. Plant Pathol J (2017) 0.75

Articles by these authors

Biofabrication with chitosan. Biomacromolecules (2005) 1.27

Human immunodeficiency virus type 1 Vif functionally interacts with diverse APOBEC3 cytidine deaminases and moves with them between cytoplasmic sites of mRNA metabolism. J Virol (2007) 1.22

Oligomerization and activity of the helicase domain of the tobacco mosaic virus 126- and 183-kilodalton replicase proteins. J Virol (2003) 1.16

Tobacco mosaic virus induced alterations in the gene expression profile of Arabidopsis thaliana. Mol Plant Microbe Interact (2003) 1.11

Interaction of the tobacco mosaic virus replicase protein with the Aux/IAA protein PAP1/IAA26 is associated with disease development. J Virol (2005) 1.07

The Tobacco mosaic virus replicase protein disrupts the localization and function of interacting Aux/IAA proteins. Mol Plant Microbe Interact (2006) 1.03

Virus-enabled silicon anode for lithium-ion batteries. ACS Nano (2010) 1.02

Tobacco mosaic virus replicase-auxin/indole acetic acid protein interactions: reprogramming the auxin response pathway to enhance virus infection. J Virol (2007) 0.96

Biofabrication to build the biology-device interface. Biofabrication (2010) 0.95

Interaction of the Tobacco mosaic virus replicase protein with a NAC domain transcription factor is associated with the suppression of systemic host defenses. J Virol (2009) 0.94

Self-assembly of virus-structured high surface area nanomaterials and their application as battery electrodes. Langmuir (2007) 0.92

Tin-coated viral nanoforests as sodium-ion battery anodes. ACS Nano (2013) 0.91

Patterned assembly of genetically modified viral nanotemplates via nucleic acid hybridization. Nano Lett (2005) 0.90

Improved metal cluster deposition on a genetically engineered tobacco mosaic virus template. Nanotechnology (2005) 0.89

Characterization of silica-coated tobacco mosaic virus. J Colloid Interface Sci (2006) 0.86

Preparation of silica stabilized Tobacco mosaic virus templates for the production of metal and layered nanoparticles. J Colloid Interface Sci (2008) 0.85

Molecularly imprinted polymers for tobacco mosaic virus recognition. Biomaterials (2006) 0.85

Effect of CuCl2 concentration on the aggregation and mineralization of Tobacco mosaic virus biotemplate. J Colloid Interface Sci (2005) 0.81

DNA binding specificity of ATAF2, a NAC domain transcription factor targeted for degradation by Tobacco mosaic virus. BMC Plant Biol (2012) 0.81

Deposition of platinum clusters on surface-modified Tobacco mosaic virus. J Nanosci Nanotechnol (2006) 0.81

Helicase ATPase activity of the Tobacco mosaic virus 126-kDa protein modulates replicase complex assembly. Virology (2010) 0.81

TMV microarrays: hybridization-based assembly of DNA-programmed viral nanotemplates. Langmuir (2007) 0.79

Optimization of virus imprinting methods to improve selectivity and reduce nonspecific binding. Biomacromolecules (2007) 0.79

Biotemplated aqueous-phase palladium crystallization in the absence of external reducing agents. Nano Lett (2010) 0.79

Biological templates for antireflective current collectors for photoelectrochemical cell applications. Nano Lett (2012) 0.79

Architecturing hierarchical function layers on self-assembled viral templates as 3D nano-array electrodes for integrated Li-ion microbatteries. Nano Lett (2012) 0.78

Quantitative study of Au(III) and Pd(II) ion biosorption on genetically engineered Tobacco mosaic virus. J Colloid Interface Sci (2009) 0.77

Association of the Tobacco mosaic virus 126kDa replication protein with a GDI protein affects host susceptibility. Virology (2011) 0.77

Carboxylate-directed in vivo assembly of virus-like nanorods and tubes for the display of functional peptides and residues. Biomacromolecules (2013) 0.76

SAXS characterization of genetically engineered tobacco mosaic virus nanorods coated with palladium in the absence of external reducing agents. J Colloid Interface Sci (2012) 0.76

An electrochemical sensor for selective TNT sensing based on Tobacco mosaic virus-like particle binding agents. Chem Commun (Camb) (2014) 0.75

Tobacco Mosaic Virus assembled high aspect ratio surfaces. Methods Mol Biol (2014) 0.75

Block copolymer nanotemplating of tobacco mosaic and tobacco necrosis viruses. Acta Biomater (2008) 0.75

Surface functionalized silica as a toolkit for studying aqueous phase palladium adsorption and mineralization on thiol moiety in the absence of external reducing agents. J Colloid Interface Sci (2010) 0.75

Biofabrication of Tobacco mosaic virus-nanoscaffolded supercapacitors via temporal capillary microfluidics. Nanotechnology (2017) 0.75

Coagulation of tobacco mosaic virus in alcohol-water-LiCl solutions. J Colloid Interface Sci (2008) 0.75

Capillary Microfluidics-Assembled Virus-like Particle Bionanoreceptor Interfaces for Label-Free Biosensing. ACS Appl Mater Interfaces (2017) 0.75