J Bacteriol. 1988 June; 170(6): 2659-2667
The Agrobacterium tumefaciens virE2 gene product is a single-stranded-DNA-binding protein that associates with T-DNA.
P J Christie,
J E Ward,
S C Winans and
E W Nester
Department of Microbiology, University of Washington, Seattle 98195.
ABSTRACT
Agrobacterium tumefaciens transfers T-DNA into the plant genome by a process mediated by Ti plasmid-encoded vir genes. Cleavage at T-DNA border sequences by the VirD endonuclease generates linear, single-stranded T-DNA molecules. In the work described in this report, we used electrophoretic mobility shift assays to show that the purified virE2 gene product binds to single-stranded DNA. VirE2 protein associates with T-DNA as shown by immunoprecipitation studies with VirE2-specific antiserum. The VirE2 protein was detected primarily in the cytoplasm, but also in the inner and outer membrane and periplasmic fractions. Virulence of a virE2 mutant was restored by mixed infection with strains carrying an intact vir region, but not with virA, virB, virD, virE, or virG mutants or chvA, chvB, or exoC mutants. We propose that the VirE2 protein is involved in the processing of T-DNA and in T-strand protection during transfer to the plant cell.
J Bacteriol. 1988 June; 170(6): 2659-2667
This article has been cited by other articles:
-
Frenkiel-Krispin, D., Wolf, S. G., Albeck, S., Unger, T., Peleg, Y., Jacobovitch, J., Michael, Y., Daube, S., Sharon, M., Robinson, C. V., Svergun, D. I., Fass, D., Tzfira, T., Elbaum, M.
(2007). Plant Transformation by Agrobacterium tumefaciens: MODULATION OF SINGLE-STRANDED DNA-VirE2 COMPLEX ASSEMBLY BY VirE1. J. Biol. Chem.
282: 3458-3464
[Abstract]
[Full Text]
-
Hodges, L. D., Vergunst, A. C., Neal-McKinney, J., den Dulk-Ras, A., Moyer, D. M., Hooykaas, P. J. J., Ream, W.
(2006). Agrobacterium rhizogenes GALLS Protein Contains Domains for ATP Binding, Nuclear Localization, and Type IV Secretion. J. Bacteriol.
188: 8222-8230
[Abstract]
[Full Text]
-
Salman, H., Abu-Arish, A., Oliel, S., Loyter, A., Klafter, J., Granek, R., Elbaum, M.
(2005). Nuclear Localization Signal Peptides Induce Molecular Delivery along Microtubules. Biophys. J
89: 2134-2145
[Abstract]
[Full Text]
-
Batchelor, R. A., Pearson, B. M., Friis, L. M., Guerry, P., Wells, J. M.
(2004). Nucleotide sequences and comparison of two large conjugative plasmids from different Campylobacter species. Microbiology
150: 3507-3517
[Abstract]
[Full Text]
-
Abu-Arish, A., Frenkiel-Krispin, D., Fricke, T., Tzfira, T., Citovsky, V., Wolf, S. G., Elbaum, M.
(2004). Three-dimensional Reconstruction of Agrobacterium VirE2 Protein with Single-stranded DNA. J. Biol. Chem.
279: 25359-25363
[Abstract]
[Full Text]
-
Hodges, L. D., Cuperus, J., Ream, W.
(2004). Agrobacterium rhizogenes GALLS Protein Substitutes for Agrobacterium tumefaciens Single-Stranded DNA-Binding Protein VirE2. J. Bacteriol.
186: 3065-3077
[Abstract]
[Full Text]
-
Tzfira, T., Frankman, L. R., Vaidya, M., Citovsky, V.
(2003). Site-Specific Integration of Agrobacterium tumefaciens T-DNA via Double-Stranded Intermediates. Plant Physiol.
133: 1011-1023
[Abstract]
[Full Text]
-
Liu, Z., Binns, A. N.
(2003). Functional Subsets of the VirB Type IV Transport Complex Proteins Involved in the Capacity of Agrobacterium tumefaciens To Serve as a Recipient in virB-Mediated Conjugal Transfer of Plasmid RSF1010. J. Bacteriol.
185: 3259-3269
[Abstract]
[Full Text]
-
Gelvin, S. B.
(2003). Agrobacterium-Mediated Plant Transformation: the Biology behind the "Gene-Jockeying" Tool. Microbiol. Mol. Biol. Rev.
67: 16-37
[Abstract]
[Full Text]
-
Sagulenko, E., Sagulenko, V., Chen, J., Christie, P. J.
(2001). Role of Agrobacterium VirB11 ATPase in T-Pilus Assembly and Substrate Selection. J. Bacteriol.
183: 5813-5825
[Abstract]
[Full Text]
-
Lee, V. T., Schneewind, O.
(2001). Protein secretion and the pathogenesis of bacterial infections. Genes Dev.
15: 1725-1752
[Full Text]
-
Zhao, Z., Sagulenko, E., Ding, Z., Christie, P. J.
(2001). Activities of virE1 and the VirE1 Secretion Chaperone in Export of the Multifunctional VirE2 Effector via an Agrobacterium Type IV Secretion Pathway. J. Bacteriol.
183: 3855-3865
[Abstract]
[Full Text]
-
Ward, D. V., Zambryski, P. C.
(2001). The six functions of Agrobacterium VirE2. Proc. Natl. Acad. Sci. USA
98: 385-386
[Full Text]
-
Zhu, J., Oger, P. M., Schrammeijer, B., Hooykaas, P. J. J., Farrand, S. K., Winans, S. C.
(2000). The Bases of Crown Gall Tumorigenesis. J. Bacteriol.
182: 3885-3895
[Full Text]
-
Llosa, M., Zupan, J., Baron, C., Zambryski, P.
(2000). The N- and C-Terminal Portions of the Agrobacterium VirB1 Protein Independently Enhance Tumorigenesis. J. Bacteriol.
182: 3437-3445
[Abstract]
[Full Text]
-
Mysore, K. S., Nam, J., Gelvin, S. B.
(2000). An Arabidopsis histone H2A mutant is deficient in Agrobacterium T-DNA integration. Proc. Natl. Acad. Sci. USA
97: 948-953
[Abstract]
[Full Text]
-
Sundberg, C. D., Ream, W.
(1999). The Agrobacterium tumefaciens Chaperone-Like Protein, VirE1, Interacts with VirE2 at Domains Required for Single-Stranded DNA Binding and Cooperative Interaction. J. Bacteriol.
181: 6850-6855
[Abstract]
[Full Text]
-
Bravo-Angel, A. M., Gloeckler, V., Hohn, B., Tinland, B.
(1999). Bacterial Conjugation Protein MobA Mediates Integration of Complex DNA Structures into Plant Cells. J. Bacteriol.
181: 5758-5765
[Abstract]
[Full Text]
-
Zhou, X.-R., Christie, P. J.
(1999). Mutagenesis of the Agrobacterium VirE2 Single-Stranded DNA-Binding Protein Identifies Regions Required for Self-Association and Interaction with VirE1 and a Permissive Site for Hybrid Protein Construction. J. Bacteriol.
181: 4342-4352
[Abstract]
[Full Text]
-
Gelvin, S. B.
(1998). Agrobacterium VirE2 Proteins Can Form a Complex with T Strands in the Plant Cytoplasm. J. Bacteriol.
180: 4300-4302
[Abstract]
[Full Text]
-
Stahl, L. E., Jacobs, A., Binns, A. N.
(1998). The Conjugal Intermediate of Plasmid RSF1010 Inhibits Agrobacterium tumefaciens Virulence and VirB-Dependent Export of VirE2. J. Bacteriol.
180: 3933-3939
[Abstract]
[Full Text]
-
Deng, W., Chen, L., Wood, D. W., Metcalfe, T., Liang, X., Gordon, M. P., Comai, L., Nester, E. W.
(1998). Agrobacterium VirD2 protein interacts with plant host cyclophilins. Proc. Natl. Acad. Sci. USA
95: 7040-7045
[Abstract]
[Full Text]
-
Bohne, J., Yim, A., Binns, A. N.
(1998). The Ti plasmid increases the efficiency of Agrobacterium tumefaciens as a recipient in virB-mediated conjugal transfer of an IncQ plasmid. Proc. Natl. Acad. Sci. USA
95: 7057-7062
[Abstract]
[Full Text]
-
Fullner, K. J.
(1998). Role of Agrobacterium virB Genes in Transfer of T Complexes and RSF1010. J. Bacteriol.
180: 430-434
[Abstract]
[Full Text]
-
Scheiffele, P., Pansegrau, W., Lanka, E.
(1995). Initiation of Agrobacterium tumefaciens T-DNA Processing. J. Biol. Chem.
270: 1269-1276
[Abstract]
[Full Text]
-
Citovsky, V, Zupan, J, Warnick, D, Zambryski, P
(1992). Nuclear localization of Agrobacterium VirE2 protein in plant cells. Science
256: 1802-1805
[Abstract]
-
Gheysen, G, Villarroel, R, Van Montagu, M
(1991). Illegitimate recombination in plants: a model for T-DNA integration.. Genes Dev.
5: 287-297
[Abstract]
-
Dumas, F., Duckely, M., Pelczar, P., Van Gelder, P., Hohn, B.
(2001). An Agrobacterium VirE2 channel for transferred-DNA transport into plant cells. Proc. Natl. Acad. Sci. USA
98: 485-490
[Abstract]
[Full Text]
-
Chen, L., Li, C. M., Nester, E. W.
(2000). Transferred DNA (T-DNA)-associated proteins of Agrobacterium tumefaciens are exported independently of virB. Proc. Natl. Acad. Sci. USA
97: 7545-7550
[Abstract]
[Full Text]
Copyright © 1988 by the American Society for Microbiology. All rights reserved.