| 1 |
Cameleon calcium indicator reports cytoplasmic calcium dynamics in Arabidopsis guard cells  |
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| 2 |
Global Analysis of Arabidopsis Gene Expression Uncovers a Complex Array of Changes Impacting Pathogen Response and Cell Cycle during Geminivirus Infection  |
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| 3 |
Complex relationship between TCTP, microtubules and actin microfilaments regulates cell shape in normal and cancer cells  |
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| 4 |
Characterization of TCTP, the Translationally Controlled Tumor Protein, from Arabidopsis thaliana  |
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| 5 |
Cellular signaling and volume control in stomatal movements in plants.  |
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| 6 |
The translationally controlled tumour protein (TCTP).  |
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| 7 |
Identification and transcription control of fission yeast genes repressed by an ammonium starvation growth arrest  |
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| 8 |
Translationally controlled tumor protein is a conserved mitotic growth integrator in animals and plants  |
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| 9 |
Translationally Controlled Tumor Protein Acts as a Guanine Nucleotide Dissociation Inhibitor on the Translation Elongation Factor eEF1A  |
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| 10 |
Chen, S.H., Wu, P.S., Chou, C.H., Yan, Y.T., Liu, H., Weng, S.Y., and Yang-Yen, H.F. (2007). A knockout mouse approach reveals that TCTP functions as an essential factor for cell proliferation and survival in a tissue- or cell type-specific manner. Mol. Biol. Cell 18, 2525-2532. |
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| 11 |
Chitpatima, S.T., Makrides, S., Bandyopadhyay, R., and Brawerman, G. (1988). Nucleotide sequence of a major messenger RNA for a 21 kilodalton polypeptide that is under translational control in mouse tumor cells. Nucleic Acids Res. 16, 2350. |
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| 12 |
Floral dip: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana.  |
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| 13 |
Microtubule polymerization dynamics.  |
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| 14 |
Comparison of Al‐induced gene expression in sensitive and tolerant soybean cultivars  |
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| 15 |
Genome-Wide Expression Profiling Arabidopsis at the Stage of Golovinomyces cichoracearum Haustorium Formation  |
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| 16 |
Solution structure and mapping of a very weak calcium-binding site of human translationally controlled tumor protein by NMR  |
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| 17 |
The growth-related, translationally controlled protein P23 has properties of a tubulin binding protein and associates transiently with microtubules during the cell cycle.  |
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| 18 |
The role of the cytoskeleton in the morphogenesis and function of stomatal complexes  |
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| 19 |
Translationally controlled tumor protein is a novel heat shock protein with chaperone-like activity  |
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| 20 |
New approach of monitoring changes in chlorophyll a fluorescence of single guard cells and protoplasts in response to physiological stimuli  |
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| 21 |
cDNA sequence coding for a translationally controlled human tumor protein.  |
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| 22 |
Microtubule dynamics.  |
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| 23 |
The role of stomata in sensing and driving environmental change  |
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| 24 |
Hinojosa-Moya, J., Xoconostle-Cazares, B., Piedra-Ibarra, E., Mendez- Tenorio, A., Lucas, W.J., and Ruiz-Medrano, R. (2008). Phylogenetic and structural analysis of translationally controlled tumor proteins. J. Mol. Evol. 66, 472-483. |
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| 25 |
Dynamics and mechanics of the microtubule plus end  |
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| 26 |
Drosophila TCTP is essential for growth and proliferation through regulation of dRheb GTPase  |
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| 27 |
GUS fusions: beta-glucuronidase as a sensitive and versatile gene fusion marker in higher plants.  |
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| 28 |
Disruption of Microtubules by Abscisic Acid in Guard Cells of Vicia faba L.  |
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| 29 |
Fusicoccin Activates the Plasma Membrane H⁺ -ATPase by a Mechanism Involving the C-Terminal Inhibitory Domain  |
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| 30 |
Modifications to the Arabidopsis Defense Proteome Occur Prior to Significant Transcriptional Change in Response to Inoculation with Pseudomonas syringae  |
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| 31 |
Arabidopsis Basic Leucine Zipper Proteins That Mediate Stress-Responsive Abscisic Acid Signaling  |
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| 32 |
Kim, M., Jung, Y., Lee, K., and Kim, C. (2000). Identification of the calcium binding sites in translationally controlled tumor protein. Arch. Pharm. Res. 23, 633-636. |
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| 33 |
Microtubules of Guard Cells are Light Sensitive  |
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| 34 |
Characterization of fortilin, a novel antiapoptotic protein.  |
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| 35 |
Molecular Identification of an IgE-Dependent Histamine-Releasing Factor  |
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| 36 |
The Role of Microtubules in Guard Cell Function  |
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| 37 |
Stimulus-Induced Oscillations in Guard Cell Cytosolic Free Calcium  |
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| 38 |
How calcium causes microtubule depolymerization  |
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| 39 |
Developmental alterations in olivary climbing fiber distribution following postnatal ethanol exposure in the rat  |
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| 40 |
Translationally controlled tumor protein: a protein identified in several nontumoral cells including erythrocytes.  |
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| 41 |
Induction of translationally controlled tumor protein (TCTP) by transcriptional and post‐transcriptional mechanisms  |
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| 42 |
Microtubule Assembly in the Absence of Added Nucleotides  |
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| 43 |
Identification of heavy metal induced changes in the expression patterns of the translationally controlled tumour protein (TCTP) in the earthworm Lumbricus rubellus1.  |
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| 44 |
TCTP protects from apoptotic cell death by antagonizing bax function.  |
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| 45 |
Thaw, P., Baxter, N.J., Hounslow, A.M., Price, C., Waltho, J.P., and Craven, C.J. (2001). Structure of TCTP reveals unexpected relationship with guanine nucleotide-free chaperones. Nat. Struct. Biol. 8, 701-704. |
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| 46 |
Expression of the gene and processed pseudogenes encoding the human and rabbit translationally controlled tumour protein (TCTP).  |
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| 47 |
Vincent, D., Ergul, A., Bohlman, M.C., Tattersall, E.A., Tillett, R.L., Wheatley, M.D., Woolsey, R., Quilici, D.R., Joets, J., Schlauch, K., et al. (2007). Proteomic analysis reveals differences between Vitis vinifera L. cv. Chardonnay and cv. Cabernet Sauvignon and their responses to water deficit and salinity. J. Exp. Bot. 58, 1873-1892. |
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| 48 |
Vonakis, B.M., Macglashan, D.W., Jr., Vilarino, N., Langdon, J.M., Scott, R.S., and MacDonald, S.M. (2008). Distinct characteristics of signal transduction events by histamine-releasing factor/ translationally controlled tumor protein (HRF/TCTP)-induced priming and activation of human basophils. Blood 111, 1789- 1796. |
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| 49 |
An N-terminal region of translationally controlled tumor protein is required for its antiapoptotic activity.  |
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| 50 |
Microtubule dynamics are involved in stomatal movement ofVicia faba L.  |
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