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AntibodySystem
Recombinant Proteins
Recombinant Human CNPY2 is a protein that plays a crucial role in various biological processes, such as protein folding, intracellular trafficking, and immune response. This protein is encoded by the CNPY2 gene and is a member of the Canopy FGF signaling regulator (CNPY) family. Recombinant Human CNPY2 is a synthetic form of this protein that is produced through genetic engineering techniques. In this article, we will discuss the structure, activity, and applications of Recombinant Human CNPY2.
The CNPY2 gene is located on chromosome 3 in humans and consists of 7 exons. The protein encoded by this gene is composed of 190 amino acids and has a molecular weight of approximately 22 kDa. Recombinant Human CNPY2 is a glycosylated protein, meaning it has sugar molecules attached to it. It also contains a signal peptide at its N-terminus, which is responsible for targeting the protein to the endoplasmic reticulum (ER) for proper folding and modification.
The crystal structure of Recombinant Human CNPY2 has been determined, revealing that it adopts a beta-sandwich fold with two beta-sheets and a central alpha-helix. This structure is similar to other members of the CNPY family and is essential for its function as a regulator of FGF signaling.
Recombinant Human CNPY2 has been shown to have multiple functions in various cellular processes. One of its main activities is its role in protein folding and quality control in the ER. This protein interacts with chaperone proteins, such as BiP and calnexin, to assist in the proper folding of newly synthesized proteins. It also plays a role in the degradation of misfolded proteins, preventing them from accumulating and causing cellular dysfunction.
Additionally, Recombinant Human CNPY2 has been found to regulate the intracellular trafficking of proteins. It interacts with the coat protein complex II (COPII) and is involved in the transport of proteins from the ER to the Golgi apparatus. This function is crucial for maintaining proper cellular homeostasis and is essential for the proper functioning of the secretory pathway.
Moreover, Recombinant Human CNPY2 has been shown to have immunomodulatory effects. It is expressed in immune cells, such as macrophages and dendritic cells, and has been found to regulate the production of pro-inflammatory cytokines. This suggests that this protein may play a role in the immune response and could potentially be used as a therapeutic target for inflammatory diseases.
Due to its diverse functions, Recombinant Human CNPY2 has various applications in both research and clinical settings. One of the main applications of this protein is in the study of protein folding and quality control mechanisms in the ER. It can be used to investigate the role of CNPY2 in various diseases, such as neurodegenerative disorders and cancer, where protein misfolding is a contributing factor.
Furthermore, Recombinant Human CNPY2 has potential applications in the development of therapeutics for protein misfolding diseases. As this protein is involved in the degradation of misfolded proteins, it could be targeted to prevent the accumulation of toxic protein aggregates in diseases such as Alzheimer’s and Parkinson’s.
In addition, the immunomodulatory effects of Recombinant Human CNPY2 make it a potential target for the treatment of inflammatory diseases. By regulating the production of pro-inflammatory cytokines, this protein could potentially be used to treat conditions such as rheumatoid arthritis and inflammatory bowel disease.
Recombinant Human CNPY2 is a crucial protein involved in various cellular processes, including protein folding, intracellular trafficking, and
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