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Recombinant Rhesus Macaque ARPC3 Protein Pre-coupled Magnetic Beads

Cat.No. : ARPC3-246R-B
Product Overview : The Recombnant protein was conjugated to magnetic beads. This ready-to-use, pre-coupled magnetic beads are in uniform particle size and narrow size distribution with large surface area, which is conducive to convenient and fast capture target molecules with high specificity and achieve magnetic separation. This product can be equipped with automation equipment for high-throughput operations.
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Source : HEK293
Species : Rhesus Macaque
Form : Solution
Particle size : ~2 μm
Beads Surface : Hydrophilic
Capacity : > 200 pmol rabbit IgG/ mg beads
Applications : Immunoassay, In vitro diagnostics, cell sorting, Immunoprecipitation/Co-precipitation, Protein/antibody separation and purification.
Stability : Stable for at least 6 months from the date of receipt of the product under proper storage and handling conditions.
Storage : 2-8℃. Do not to freeze thaw the Beads
Concentration : 10mg beads/mL
Storage Buffer : PBS buffer
Gene Name : ARPC3 actin related protein 2/3 complex, subunit 3, 21kDa [ Macaca mulatta (Rhesus monkey) ]
Official Symbol : ARPC3
Synonyms : ARPC3; actin-related protein 2/3 complex subunit 3;
Gene ID : 709199
mRNA Refseq : NM_001260766
Protein Refseq : NP_001247695
UniProt ID : F7H998

For Research Use Only. Not intended for any clinical use. No products from Creative BioMart may be resold, modified for resale or used to manufacture commercial products without prior written approval from Creative BioMart.

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Q&As (7)

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Is the ARPC3 protein essential for cell viability? 06/03/2022

Yes, the ARPC3 protein is essential for cell viability as it is a core component of the ARP2/3 complex, which is crucial for actin polymerization and cytoskeletal organization.

How is the ARPC3 protein involved in cellular processes? 05/03/2022

The ARPC3 protein is involved in a wide range of cellular processes that require actin dynamics, such as cell motility, endocytosis, cell division, and formation of cellular protrusions like lamellipodia and filopodia.

How can the ARPC3 protein be regulated? 01/09/2022

The ARPC3 protein can be regulated through various mechanisms. Factors such as phosphorylation, protein-protein interactions, and post-translational modifications can modulate its activity and influence actin dynamics in cells.

Can targeting the ARPC3 protein have therapeutic implications? 11/30/2021

Targeting the ARPC3 protein or the ARP2/3 complex could have potential therapeutic implications for diseases characterized by dysregulated actin dynamics, such as cancer metastasis, autoimmune disorders, and neurodegenerative diseases. Developing specific inhibitors or modulators of ARPC3 activity could be explored as potential therapeutic strategies.

Are there any known diseases associated with alterations in ARPC3 expression or function? 05/15/2020

Mutations or dysregulation of the ARPC3 gene have been linked to developmental disorders and genetic syndromes, including Baraitser-Winter syndrome and distal arthrogryposis.

Are there any known binding partners of the ARPC3 protein? 01/18/2020

The ARPC3 protein interacts with other components of the ARP2/3 complex, such as ARPC1, ARPC2, ARPC4, and ARPC5, to form a functional actin nucleation complex. It also interacts with various actin-binding proteins and regulators to mediate actin dynamics.

How can researchers study the ARPC3 protein in the laboratory? 10/20/2019

Researchers can study the ARPC3 protein by using techniques such as immunoblotting, immunofluorescence microscopy, co-immunoprecipitation, and gene knockout or knockdown approaches in cell culture models to assess its expression, localization, interactions, and functional effects.

Customer Reviews (3)

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Reviews
04/04/2021

    the ARPC3 protein finds great utility in protein electron microscopy structure analysis, consistently delivering exceptional results.

    11/15/2020

      Its stability and functional attributes ensure reliable imaging and facilitate the elucidation of complex protein structures.

      02/01/2020

        Its versatility and reliability make it an indispensable asset for scientists seeking to explore the complexities of various biological systems.

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