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MABS276

Anti-pan polyglycylated Tubulin Antibody, clone AXO 49

clone AXO 49, from mouse

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Gabaryty przesyłkiSKUDostępnośćCena netto
50 μL

Przewidywany termin wysyłki07 kwietnia 2026zKuehne + Nagel Sp. z o.o.

1470,00 zł

Informacje o tej pozycji

UNSPSC Code:
12352203
NACRES:
NA.41
eCl@ss:
32160702
Clone:
AXO 49, monoclonal
Species reactivity:
Apis, porcine, snail, pig, sea urchin, protista, sheep, mouse, lemur, Drosophila, Paramecium, trout
Application:
DB, IF, WB
Citations:
17

1470,00 zł


Przewidywany termin wysyłki07 kwietnia 2026Szczegóły


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Pozwól nam pomóc

biological source

mouse

Quality Level

antibody form

purified immunoglobulin

antibody product type

primary antibodies

clone

AXO 49, monoclonal

species reactivity

Apis, porcine, snail, pig, sea urchin, protista, sheep, mouse, lemur, Drosophila, Paramecium, trout

should not react with

Euglena, human (cilia)

technique(s)

dot blot: suitable, immunofluorescence: suitable, western blot: suitable

isotype

IgG1κ

shipped in

wet ice

General description

Several post-translational modifications of tubulin have been identified in eukaryotic cells. Glycylation is a poly-modification which occurs as lateral branching of glycine chains of variable length identified in axonemal tubulin of Paramecium cilia. This modification has been detected on tubulin and/or cilia/flagella of many unicellular and pluricellular organisms. The differential distribution of distinct polyglycylated tubulin isoforms between cytoplasmic and axonemal compartments indicates that polyglycylation levels of tubulin is highly regulated at the cell level. The AXO49 antibody is reactive mainly on axonemal tubulin of motile cilia and flagella which are polyglycylated. In some cases, reactivity may also be observed on other very stable microtubule networks. This antibody is useful for cilia and flagella detection.
~55 kDa observed

Immunogen

Insoluble fraction of Paramecium cilia (Paramecium axonemes)

Application

Detect Tubulin using this mouse monoclonal antibody, Anti-pan polyglycylated Tubulin Antibody, clone AXO 49 validated for use in western blotting, Immunofluorescence & Dot Blot.

Biochem/physiol Actions

This antibody recognizes the lateral connecting branches of a polymer, which contains at least 3 glycine residues. This antibody demonstrates cross reactivity against polyglycylated tubulin, as well as with other polyglycylated proteins .

Physical form

Format: Purified

Analysis Note

Evaluated by Western Blotting on total cytoskeletal proteins of Paramecium. : A 1:50,000 dilution of this antibody detected polyglycylated Tubulin in 10 µg of Paramecium total cytoskeletal proteins.

Other Notes

Concentration: Please refer to the Certificate of Analysis for the lot-specific concentration.
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Klasa składowania

12 - Non Combustible Liquids

wgk

WGK 1

flash_point_f

Not applicable

flash_point_c

Not applicable


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Dokumenty związane z niedawno zakupionymi produktami zostały zamieszczone w Bibliotece dokumentów.

Odwiedź Bibliotekę dokumentów

Harrison D Pravder et al.
International journal of molecular sciences, 23(6) (2022-03-26)
A useful model for determining the mechanisms by which actin and actin binding proteins control cellular architecture is the Drosophila melanogaster process of spermatogenesis. During the final step of spermatogenesis, 64 syncytial spermatids individualized as stable actin cones move synchronously
Suzanne H Hodge et al.
Biology open, 10(8) (2021-08-07)
Primary cilia are compartmentalised from the rest of the cell by a ciliary gate comprising transition fibres and a transition zone. The ciliary gate allows the selective import and export of molecules such as transmembrane receptors and transport proteins. These
Jennifer Lennon et al.
Frontiers in genetics, 13, 943197-943197 (2022-07-26)
Axonemal dynein motors are large multi-subunit complexes that drive ciliary movement. Cytoplasmic assembly of these motor complexes involves several co-chaperones, some of which are related to the R2TP co-chaperone complex. Mutations of these genes in humans cause the motile ciliopathy
Sara Molina-Gil et al.
Nature communications, 14(1), 5730-5730 (2023-09-16)
The re-use of genes in new organs forms the base of many evolutionary novelties. A well-characterised case is the recruitment of the posterior spiracle gene network to the Drosophila male genitalia. Here we find that this network has also been
Sharon Ben-Hur et al.
Nature communications, 15(1), 5715-5715 (2024-07-09)
Mitochondria are maternally inherited, but the mechanisms underlying paternal mitochondrial elimination after fertilization are far less clear. Using Drosophila, we show that special egg-derived multivesicular body vesicles promote paternal mitochondrial elimination by activating an LC3-associated phagocytosis-like pathway, a cellular defense

Numer pozycji handlu globalnego

SKUNUMER GTIN
MABS27604053252927997

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