Human Dedicator Of Cytokinesis 3 (DOCK3) Protein

Este producto es parte de DOCK - Dedicator of Cytokinesis
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1872€ (1 mg)

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935106861
info@markelab.com
name
Human Dedicator Of Cytokinesis 3 (DOCK3) Protein
category
Proteins and Peptides
provider
Abbexa
reference
abx653130
tested applications
WB, SDS-PAGE

Description

Human Dedicator Of Cytokinesis 3 (DOCK3) Protein is a Recombinant Human protein expressed in E. coli.

Documents del producto

Instrucciones
Data sheet
Descargar

Product specifications

Category
Proteins and Peptides
Immunogen Target
Dedicator Of Cytokinesis 3 (DOCK3)
Host
E. coli
Origin
Human
Conjugation
Unconjugated
Observed MW
Concentration: Prior to lyophilization: 200 µg/ml
Sequence Fragment: Please enquire.
Tag: N-terminal His tag
Expression
Recombinant
Purity
> 90%
Size 1
1 mg
Size 2
5 mg
Form
Lyophilized To keep the original salt concentration, we recommend reconstituting to the original concentration prior to lyophilization (see Concentration) in ddH2O. If a lower concentration is required, dilute in PBS, pH 7.4. If a higher concentration is required, the product can be reconstituted directly in PBS, pH 7.4, though please note that this will change the overall salt concentration. The stock concentration should be between 0.1-1.0 mg/ml. Do not vortex.
Tested Applications
WB, SDS-PAGE
Buffer
Prior to lyophilization: PBS, pH 7.4, containing 0.01% Sarcosyl, 1 mM DTT, 5% Trehalose and Proclin-300.
Availability
Shipped within 1-2 months.
Storage
Store at 2-8 °C for up to one month. Store at -80 °C for up to one year. Avoid repeated freeze/thaw cycles.
Dry Ice
No
Alias
DOCK3, MOCA, PBP, Dock3, dedicator of cytokinesis 3, NEDIDHA
Background
Protein DOCK3
Status
RUO
Note
This product is for research use only.   Not for human consumption, cosmetic, therapeutic or diagnostic use.

Descripción

DOCK3, or MOCA, is a neuron-specific GEF for Rac1 that regulates neurite outgrowth, axonal growth, and synaptic plasticity in the CNS. It mediates actin rearrangement, promoting axonal guidance and dendritic remodeling. Highly expressed in neurons, DOCK3 maintains synapse connectivity and supports neuroprotection. Dysregulation contributes to neurodegenerative diseases like Alzheimer’s, where it influences tau phosphorylation and cell survival pathways such as ERK/Akt activation. DOCK3 deficiency causes motor and cognitive impairments in mouse models, highlighting its role in neuronal development, CNS recovery, and axonal regeneration.

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