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View ProductsSize | 100ug |
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Brand | Arovia |
Product type | Recombinant Proteins |
Product name | Recombinant Human ANKRD2 Protein, N-His |
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Origin species | Human |
Expression system | Prokaryotic expression |
Molecular weight | 23.09 kDa |
Buffer | Lyophilized from a solution in PBS pH 7.4, 0.02% NLS, 1mM EDTA, 4% Trehalose, 1% Mannitol. |
Form | Liquid |
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 | Arovia |
Host species | Escherichia coli (E.coli) |
Fragment Type | Asp148-His333 |
Aliases /Synonyms | Ankyrin repeat domain-containing protein 2, ARPP, ANKRD2, Skeletal muscle ankyrin repeat protein, hArpp |
Reference | ARO-P12300 |
Note | For research use only. |
Recombinant proteins have revolutionized the field of biotechnology and have become essential tools in various scientific applications. One such protein is the Recombinant Human ANKRD2 Protein, which has gained significant attention due to its unique structure and diverse functions. In this article, we will explore the structure, activity, and applications of this recombinant protein in detail.
The ANKRD2 (Ankyrin Repeat Domain 2) gene encodes for a protein with 409 amino acids, which belongs to the ankyrin repeat family. The recombinant form of this protein is produced by cloning the ANKRD2 gene into an appropriate expression vector and expressing it in a suitable host organism, such as E. coli or yeast. The resulting protein has a molecular weight of approximately 47 kDa.
The structure of Recombinant Human ANKRD2 Protein consists of multiple ankyrin repeats, which are 33 amino acid long motifs that form a helix-loop-helix structure. These repeats are responsible for the protein’s ability to bind to a variety of target molecules, making it a versatile and multifunctional protein.
The primary function of ANKRD2 is to regulate gene expression by binding to DNA and other regulatory proteins. It has been shown to interact with various transcription factors, such as NF-κB, p53, and AP-1, and modulate their activity. ANKRD2 also plays a crucial role in the regulation of cell proliferation, differentiation, and apoptosis.
In addition to its role in gene regulation, Recombinant Human ANKRD2 Protein has been found to have other activities, including binding to cytoskeletal proteins and regulating cell motility. It has also been shown to interact with viral proteins and inhibit viral replication, making it a potential antiviral agent.
The unique structure and diverse functions of Recombinant Human ANKRD2 Protein make it a valuable tool in various scientific applications. Here are some of its key applications:
The production of recombinant proteins is a crucial step in many research and industrial processes. Recombinant Human ANKRD2 Protein can be used as a fusion partner to enhance the expression and solubility of other proteins, making it a useful tool in recombinant protein production.
Due to its ability to bind to a variety of target molecules, Recombinant Human ANKRD2 Protein has been used in diagnostic assays for the detection of various diseases. It has been shown to interact with viral proteins, making it a potential biomarker for viral infections.
ANKRD2 has been implicated in various diseases, including cancer, cardiovascular diseases, and neurological disorders. Recombinant Human ANKRD2 Protein can be used as a therapeutic agent to modulate its activity and potentially treat these diseases.
Recombinant Human ANKRD2 Protein has been used in vaccine development as a potential antigen to induce an immune response against viral infections. Its ability to interact with viral proteins makes it a promising candidate for the development of novel vaccines.
The multifunctional nature of ANKRD2 makes it a valuable tool in various research areas, including cell biology, molecular biology, and immunology. Recombinant Human ANKRD2 Protein can be used to study its role in gene regulation, cell signaling, and other cellular processes.</
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