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E3156

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Anti-AtEB1b (C-terminal) antibody produced in rabbit

~2 mg/mL, affinity isolated antibody, buffered aqueous solution

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200 μL
R$ 4.606,00

R$ 4.606,00


Previsão de entrega em02 de maio de 2025


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200 μL
R$ 4.606,00

About This Item

Número MDL:
Código UNSPSC:
12352203
NACRES:
NA.41

R$ 4.606,00


Previsão de entrega em02 de maio de 2025


Solicite uma grande encomenda

fonte biológica

rabbit

Nível de qualidade

conjugado

unconjugated

forma do anticorpo

affinity isolated antibody

tipo de produto de anticorpo

primary antibodies

clone

polyclonal

Formulário

buffered aqueous solution

peso molecular

antigen 60 kDa (additional band at 50 kDa representing degradation products)

reatividade de espécies

Arabidopsis sp.

concentração

~2 mg/mL

técnica(s)

western blot: 1-2 μg/mL using leaves extract (cytosolic fraction) of transgenic Arabidopsis seedlings expressing YFP-tagged AtEB1b

Condições de expedição

dry ice

temperatura de armazenamento

−20°C

modificação pós-traducional do alvo

unmodified

Informações sobre genes

Arabidopsis thaliana ... ATEB1A(823923) , ATEB1B(836370)

Categorias relacionadas

Especificidade

Recognizes AtEB1b fusion protein expressed in transgenic Arabidopsis plants.

Imunogênio

synthetic peptide corresponding to amino acids 205-221 located in a region near the C-terminus of Arabidopsis AtEB1b, conjugated to KLH. This sequence is highly conserved (single amino acid substitution) in AtEB1a and AtEB1c.

Aplicação

Anti-AtEB1b (C-terminal) antibody produced in rabbit is suitable for western blotting at a concentration of 1-2μg/mL using leaves extract (cytosolic fraction) of transgenic Arabidopsis seedlings expressing YFP-tagged AtEB1b.

Ações bioquímicas/fisiológicas

End-binding 1 (EB1) proteins are plus-end-tracking proteins that are specifically localized to growing microtubule plus ends that regulate microtubule and interact with intracellular targets. The plant-specific EB1 subtype functions on the spindle microtubules by accumulating in the prophase nucleus. The microtubule-end-binding protein expressed in Arabidopsis thaliana cells (is called as AtEB1a) is fused with green fluorescent protein (GFP) resulting in labelling of spindle poles. During interphase, AtEB1a-GFP labels the microtubule plus end and also marks the minus end. The microtubule associated protein END BINDING 1b (EB1b) is involved as mutants and dampens root responses to touch and enhances gravitropism. In animals, EB1 proteins have acidic C-terminal tails that might induce an auto-inhibitory conformation.

forma física

Solution in 0.01 M phosphate buffered saline, pH 7.4, containing 15 mM sodium azide.

Exoneração de responsabilidade

Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.

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Código de classe de armazenamento

10 - Combustible liquids

Classe de risco de água (WGK)

WGK 3

Ponto de fulgor (°F)

Not applicable

Ponto de fulgor (°C)

Not applicable

Equipamento de proteção individual

Eyeshields, Gloves, multi-purpose combination respirator cartridge (US)


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Shinichiro Komaki et al.
Journal of cell science, 123(Pt 3), 451-459 (2010-01-14)
End-binding 1 (EB1) proteins are evolutionarily conserved plus-end-tracking proteins that localize to growing microtubule plus ends where they regulate microtubule dynamics and interactions with intracellular targets. Animal EB1 proteins have acidic C-terminal tails that might induce an autoinhibitory conformation. Although
Jordi Chan et al.
Nature cell biology, 5(11), 967-971 (2003-10-15)
In plants, it is unclear how dispersed cortical microtubules are nucleated, polarized and organized in the absence of centrosomes. In Arabidopsis thaliana cells, expression of a fusion between the microtubule-end-binding protein AtEB1a and green fluorescent protein (GFP) results in labelling
Laura Gleeson et al.
Plant science : an international journal of experimental plant biology, 187, 1-9 (2012-03-13)
The ability of roots to navigate around rocks and other debris as they grow through the soil requires a mechanism for detecting and responding to input from both touch and gravity sensing systems. The microtubule associated protein END BINDING 1b

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