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Brand: ProteoGenix

Recombinant Mouse ROBO3 Protein, N-His

  • ARO-P10437
Host species:
Escherichia coli (E.coli)
Origin species:
Mouse
Molecular weight:
21.18 kDa

$392.00

+ 392 loyalty points
Gly173–Val345
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Recombinant Mouse ROBO3 Protein, N-His

Recombinant Mouse ROBO3 Protein, N-His

Product name Recombinant Mouse ROBO3 Protein, N-His
Origin species Mouse
Expression system Prokaryotic expression
Molecular weight 21.18 kDa
Buffer Lyophilized from a solution in PBS pH 7.4, 0.02% NLS, 1mM EDTA, 4% Trehalose, 1% Mannitol.
Delivery condition Dry Ice
Delivery lead time in business days 3-5 days if in stock; 3-5 weeks if production needed
Storage condition 4°C for short term (1 week), -20°C or -80°C for long term (avoid freezing/thawing cycles; addition of 20-40% glycerol improves cryoprotection)
Brand ProteoGenix
Host species Escherichia coli (E.coli)
Fragment Type Gly173-Val345
Aliases /Synonyms Roundabout-like protein 3, ROBO3, Roundabout homolog 3
Reference ARO-P10437
Note For research use only.
Molecular Constructor
Gly173–Val345

Introduction

Recombinant Mouse ROBO3 Protein is a genetically engineered protein that has been produced in a laboratory setting. This protein is a member of the Roundabout (ROBO) family of proteins and is involved in various biological processes, including axon guidance and cell migration. In this article, we will discuss the structure, activity, and applications of Recombinant Mouse ROBO3 Protein.

Structure of Recombinant Mouse ROBO3 Protein

Recombinant Mouse ROBO3 Protein is composed of 1,382 amino acids and has a molecular weight of approximately 155 kDa. It is a transmembrane protein, meaning it spans across the cell membrane, with a large extracellular domain and a smaller intracellular domain. The extracellular domain contains five immunoglobulin-like domains and three fibronectin type III domains, which are important for protein-protein interactions. The intracellular domain contains a conserved cytoplasmic domain that is responsible for signaling.

Activity of Recombinant Mouse ROBO3 Protein

The main function of Recombinant Mouse ROBO3 Protein is to act as a receptor for the Slit family of proteins. Slit proteins are secreted molecules that play a crucial role in axon guidance and cell migration during development. When Slit proteins bind to ROBO3, it triggers a signaling cascade that regulates the growth and guidance of axons and the movement of cells.

In addition to its role in axon guidance and cell migration, Recombinant Mouse ROBO3 Protein has been found to play a role in other biological processes, such as angiogenesis, bone development, and tumor progression. It has also been implicated in neurological disorders, including schizophrenia and autism spectrum disorders.

Applications of Recombinant Mouse ROBO3 Protein

Recombinant Mouse ROBO3 Protein has various applications in both research and clinical settings. In research, it is commonly used as a tool to study axon guidance and cell migration. The recombinant protein can be used to investigate the signaling pathways involved in these processes and to identify potential therapeutic targets.

In the clinical setting, Recombinant Mouse ROBO3 Protein has potential applications in the treatment of neurological disorders. As mentioned earlier, ROBO3 has been linked to schizophrenia and autism spectrum disorders, and further research on this protein may lead to the development of new treatments for these conditions.

Moreover, Recombinant Mouse ROBO3 Protein has been used as an antigen in vaccine development. By using the recombinant protein as an antigen, researchers can study the immune response to ROBO3 and potentially develop vaccines against diseases associated with this protein.

Conclusion

In conclusion, Recombinant Mouse ROBO3 Protein is a genetically engineered protein that plays a crucial role in axon guidance, cell migration, and other biological processes. Its structure, activity, and applications make it a valuable tool in both research and clinical settings. Further studies on this protein may lead to a better understanding of its role in various diseases and the development of new treatments.

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