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Mouse Monoclonal to alpha-tubulin

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Data sheet of Mouse Monoclonal to alpha-tubulin

BrandExbio
Product typePrimary antibodies
ReactivityBroad species reactivity
ClonalityMonoclonal

More info about Mouse Monoclonal to alpha-tubulin

Brand: Exbio
Product no.: 11-250-C025
Product type: Primary antibodies
Host species: Mouse
Product name: Mouse Monoclonal to alpha-tubulin
Antigen: alpha-tubulin
Clonality: Monoclonal
Clone: TU-01
Isotype: IgG1
Immunogen: Fraction of tubulin purified from porcine brain by two cycles of polymerization - depolymerization.
Format: purified
Specificity: The antibody TU-01 recognizes the defined epitope (aa 65-97) on N-terminal structural domain of alpha-tubulin.
Categories: Cytoskeleton: Tubulin System (Veterinary), Cytoskeleton: Tubulin System (Rodent), Cytoskeleton: Tubulin System (Human), Cytoskeleton: Microtubular System
Concentration: 1 mg/ml
Storage buffer: Phosphate buffered saline (PBS) with 15 mM sodium azide, approx. pH 7.4
Storage / stability: Store at 2-8°C. Do not freeze. Do not use after expiration date stamped on vial label.
Background: The microtubules are intracellular dynamic polymers made up of evolutionarily conserved polymorphic alpha/beta-tubulin heterodimers and a large number of microtubule-associated proteins (MAPs). The microtubules consist of 13 protofilaments and have an outer diameter 25 nm. Microtubules have their intrinsic polarity; highly dynamic plus ends and less dynamic minus ends. Microtubules are required for vital processes in eukaryotic cells including mitosis, meiosis, maintenance of cell shape and intracellular transport. Microtubules are also necessary for movement of cells by means of flagella and cilia. In mammalian tissue culture cells microtubules have their minus ends anchored in microtubule organizing centers (MTOCs).The GTP (guanosintriphosphate) molecule is an essential for tubulin heterodimer to associate with other heterodimers to form microtubule. In vivo, microtubule dynamics vary considerably. Microtubule polymerization is reversible and a populations of microtubules in cells are on their minus ends either growing or shortening – this phenomenon is called dynamic instability of microtubules. On a practical level, microtubules can easily be stabilized by the addition of non-hydrolysable analogues of GTP (eg. GMPPCP) or more commonly by anti-cancer drugs such as Taxol. Taxol stabilizes microtubules at room temperature for many hours. Using limited proteolysis by enzymes both tubulin subunits can be divided into N-terminal and C-terminal structural domains. The alpha-tubulin (relative molecular weight around 50 kDa) is globular protein that exists in cells as part of soluble alpha/beta-tubulin dimer or it is polymerized into microtubules. In different species it is coded by multiple tubulin genes that form tubulin classes (in human 6 genes). Expressed tubulin genes are named tubulin isotypes. Some of the tubulin isotypes are expressed ubiquitously, while some have more restricted tissue expression.Alpha-tubulin is also subject of numerous post-translational modifications. Tubulin isotypes and their posttranslational modifications are responsible for multiple tubulin charge variants - tubulin isoforms. Heterogeneity of alpha-tubulin is concentrated in C-terminal structural domain._x000D_
Purity: > 95% (by SDS-PAGE)
Purification: Purified by precipitation methods
Product specific references: *Kukharskyy V, Sulimenko V, Macůrek L, Sulimenko T, Dráberová E, Dráber P: Complexes of gamma-tubulin with nonreceptor protein tyrosine kinases Src and Fyn in differentiating P19 embryonal carcinoma cells. Exp Cell Res. 2004 Aug 1;298(1):218-28., *Smertenko A, Blume Y, Viklicky V, Opatrny Z, Draber P: Post-translational modifications and multiple tubulin isoforms in Nicotiana tabacum L. cells. Planta. 1997;201(3):349-58. _x000D_ , *Linhartova I, Draber P, Draberova E, Viklicky V: Immunological discrimination of beta-tubulin isoforms in developing mouse brain. Post-translational modification of non-class-III beta-tubulins. Biochem J. 1992 Dec 15;288 ( Pt 3):919-24. _x000D_ , *Draber P, Draberova E, Viklicky V: Immunostaining of human spermatozoa with tubulin domain-specific monoclonal antibodies. Recognition of a unique beta tubulin epitope in the sperm head. Histochemistry. 1991;95(5):519-24. _x000D_ , *Draber P, Draberova E, Linhartova I, Viklicky V: Differences in the exposure of C- and N-terminal tubulin domains in cytoplasmic microtubules detected with domain-specific monoclonal antibodies. J Cell Sci. 1989 Mar;92 ( Pt 3):519-28. _x000D_ , *Grimm M, Breitling F, Little M: Location of the epitope for the alpha-tubulin monoclonal antibody TU-O1. Biochim Biophys Acta. 1987 Jul 24;914(1):83-8. _x000D_ , *Draber P, Draberova E, Zicconi D, Sellitto C, Viklicky V, Cappuccinelli P: Heterogeneity of microtubules recognized by monoclonal antibodies to alpha-tubulin._x000D_ Eur J Cell Biol. 1986 Jun;41(1):82-8. _x000D_ , *Viklicky V, Draber P, Hasek J, Bartek J: Production and characterization of a monoclonal antitubulin antibody._x000D_ Cell Biol Int Rep. 1982 Aug;6(8):725-31. _x000D_ , *Smertenko A, Blume Y, Viklický V, Dráber P: Exposure of tubulin structural domains in Nicotiana tabacum microtubules probed by monoclonal antibodies. Eur J Cell Biol. 1997 Feb;72(2):104-12., *Lukas J, Mazna P, Valenta T, Doubravska L, Pospichalova V, Vojtechova M, Fafilek B, Ivanek R, Plachy J, Novak J, Korinek V: Dazap2 modulates transcription driven by the Wnt effector TCF-4. Nucleic Acids Res. 2009 Mar 20. [Epub ahead of print]_x000D_ _x000D_ _x000D_ , *Nováková M, Dráberová E, Schürmann W, Czihak G, Viklický V, Dráber P: gamma-Tubulin redistribution in taxol-treated mitotic cells probed by monoclonal antibodies. Cell Motil Cytoskeleton. 1996;33(1):38-51._x000D_
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Shipping condition: Room temperature

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