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Exbio
—
Research products
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Antibodies
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Cytoskeleton and ECM
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Anti-alpha-Tubulin Alexa Fluor<sup>®</sup> 488
Anti-alpha-Tubulin Alexa Fluor
®
488
Regulatory status
RUO
Antigen
alpha-Tubulin
Clone
YOL1/34
Format
Alexa Fluor
®
488
Reactivity
Mouse, Rat, Mammalian, Avian, Yeast, Human
Application
FC-IC, WB, IHC-F, IHC-P, ICC
Excitation laser
blue (488 nm)
Variant
0.1 mg
A4-886-C100
Ask for delivery term
HERE
242.00 USD
Variant
0.1 mg
A4-886-C100
Ask for delivery term
HERE
242.00 USD
Contact distributor
Product details
Description
Images
References
SDS download
Isotype
Rat IgG2a
Specificity
The rat monoclonal antibody YOL1/34 recognizes an epitope of alpha-tubulin localized between amino acids 414-422. It has higher affinity for fixed microtubules than for native ones.
Application
FC-IC, WB, IHC-F, IHC-P, ICC
Application details
Immunocytochemistry: Recommended dilution: 2-10 μg/ml.
Reactivity
Mouse, Rat, Mammalian, Avian, Yeast, Human
Immunogen
Yeast tubulin
Concentration
0.1 mg/ml
Preparation
Purified antibody is conjugated with Alexa Fluor
®
488 NHS ester under optimum conditions and unconjugated antibody and free fluorochrome are removed by size-exclusion chromatography.
Formulation
Stabilizing phosphate buffered saline (PBS), pH 7.4, 15 mM sodium azide
Storage and handling
Store at 2-8°C. Protect from prolonged exposure to light. Do not freeze.
Exbio licence note
The product is intended For Research Use Only. Diagnostic or therapeutic applications are strictly forbidden. Products shall not be used for resale or transfer to third parties either as a stand-alone product or as a manufacture component of another product without written consent of EXBIO Praha, a.s. EXBIO Praha, a.s. will not be held responsible for patent infringement or any other violations of intellectual property rights that may occur with the use of the products. Orders for all products are accepted subject to the Term and Conditions available at www.exbio.cz. EXBIO, EXBIO Logo, and all other trademarks are property of EXBIO Praha, a.s.
Licence note
Alexa Fluor
®
, Pacific Blue™ and Pacific Orange™ are registered trademarks of Life Technologies Corporation.
Licence label
This product is provided under an intellectual property license from Life Technologies Corporation. The transfer of this product is conditioned on the buyer using the purchased product solely in research conducted by the buyer, excluding contract research or any fee for service research, and the buyer must not (1) use this product or its components for (a) diagnostic, therapeutic or prophylactic purposes; (b) testing, analysis or screening services, or information in return for compensation on a per-test basis; or (c) manufacturing or quality assurance or quality control, and/or (2) sell or transfer this product or its components for resale, whether or not resold for use in research. For information on purchasing a license to this product for purposes other than as described above, contact Life Technologies Corporation, 5781 Van Allen Way, Carlsbad, CA 92008 USA or outlicensing@lifetech.com.
Other names
TUBA
Antigen description
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.
Entrez Gene ID
7277
UniProt ID
Q71U36
Immunocytochemistry staining of alpha tubulin in HeLa cells by mouse monoclonal antibody YOL1/34 conjugated with Alexa Fluor 488 (4 μg/ml; green).
Product specific references:
Badin-Larçon AC, Boscheron C, Soleilhac JM, Piel M, Mann C, Denarier E, Fourest-Lieuvin A, Lafanechère L, Bornens M, Job D: Suppression of nuclear oscillations in Saccharomyces cerevisiae expressing Glu tubulin. Proc Natl Acad Sci U S A 2004 Apr 13;101(15):5577-82
PubMed
Harris GS, Keath EJ, Medoff J: Expression of alpha- and beta-tubulin genes during dimorphic-phase transitions of Histoplasma capsulatum. Mol Cell Biol. 1989 May;9(5):2042-9
PubMed
Larcher JC, Boucher D, Lazereg S, Gros F, Denoulet P: Interaction of kinesin motor domains with alpha- and beta-tubulin subunits at a tau-independent binding site. Regulation by polyglutamylation. J Biol Chem. 1996 Sep 6;271(36):22117-24
PubMed
Breitling F, Little M: Carboxy-terminal regions on the surface of tubulin and microtubules. Epitope locations of YOL1/34, DM1A and DM1B. J Mol Biol. 1986 May 20;189(2):367-70
PubMed
Further SDS language mutations available for download below. Please contact us with request for additional languages on info@exbio.cz
MPAbNaN3_SDS_v1_AU.pdf
MPAbNaN3_SDS_v1_GB.pdf
MPAbNaN3_SDS_v1_TR.pdf
MPAbNaN3_SDS_v6_AT.pdf
MPAbNaN3_SDS_v6_CH.pdf
MPAbNaN3_SDS_v6_CS.pdf
MPAbNaN3_SDS_v6_EN.pdf
MPAbNaN3_SDS_v6_ES.pdf
MPAbNaN3_SDS_v6_FR.pdf
MPAbNaN3_SDS_v6_IT.pdf
MPAbNaN3_SDS_v6_NO.pdf
MPAbNaN3_SDS_v6_PL.pdf
MPAbNaN3_SDS_v6_PT.pdf
MPAbNaN3_SDS_v6_SE.pdf
MPAbNaN3_SDS_v6_SK.pdf
MPAbNaN3_SDS_v6_SL.pdf
MPAbNaN3_SDS_v7_DE.pdf
Variant
0.1 mg
A4-886-C100
Ask for delivery term
HERE
242.00 USD
Variant
0.1 mg
A4-886-C100
Ask for delivery term
HERE
242.00 USD
Contact distributor
Datasheet download
Bulk requests
Technical support for this product
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®
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Clone
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Reg. status
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Application
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