Dedicator of Cytokinesis 1 (DOCK1) Antibody

Este producto es parte de DOCK - Dedicator of Cytokinesis
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442€ (200 µl)

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935106861
info@markelab.com
name
Dedicator of Cytokinesis 1 (DOCK1) Antibody
category
Primary Antibodies
provider
Abbexa
reference
abx431929
tested applications
WB

Description

DOCK1 Antibody is a Goat Polyclonal antibody against DOCK1.

Documents del producto

Instrucciones
Data sheet
Descargar

Product specifications

Category
Primary Antibodies
Immunogen Target
Target: Dedicator of Cytokinesis 1 (DOCK1)
Immunogen: abx269057 - C-Terminus: C-TTRKQTSVDSGIVQ
Host
Goat
Reactivity
Human
Assay Type
Concentration: 0.5 mg/ml
Recommended Dilution
Optimal dilutions/concentrations should be determined by the end user.
Clonality
Polyclonal
Conjugation
Unconjugated
Isotype
IgG
Purification
Purified from goat serum by ammonium sulphate precipitation followed by antigen affinity chromatography using the immunizing peptide.
Size 1
200 µl
Form
Liquid
Tested Applications
WB
Buffer
Tris saline, pH 7.3, containing 0.02% sodium azide and 0.5% bovine serum albumin.
Availability
Shipped within 5-10 working days.
Storage
Aliquot and store at -20°C. Avoid repeated freeze/thaw cycles.
Dry Ice
No
Gene ID
1793, 330662
NCBI Accession
NP_001371.1
Alias
DOCK1, DOCK180, ced5, Dock180, dedicator of cytokinesis 1
Background
Antibody anti-DOCK1
Status
RUO
Note
THIS PRODUCT IS FOR RESEARCH USE ONLY. NOT FOR USE IN DIAGNOSTIC, THERAPEUTIC OR COSMETIC PROCEDURES. NOT FOR HUMAN OR ANIMAL CONSUMPTION.

Descripción

DOCK1, also known as DOCK180, is a GEF that activates Rac1 GTPase, regulating cytoskeleton rearrangement and cell migration. It forms a DOCK1–ELMO–Crk complex for Rac1 activation, driving lamellipodia formation and cell motility. DOCK1 is crucial for phagocytosis, cell polarity, neural crest migration, and cardiovascular development. Overexpression links to cancer metastasis by promoting tumor motility. It localizes to cytoplasm and membrane ruffles during migration and is regulated via phosphorylation and scaffold interactions. Knockout studies in mice reveal its role in embryonic viability, neuronal differentiation, and immune responses, highlighting its importance in cell adhesion and morphology.

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