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Recombinant Proteins
Recombinant Human ADCY6 Protein, also known as Adenylate Cyclase 6, is a highly specialized enzyme that plays a crucial role in the regulation of cellular signaling pathways. This protein is produced through genetic engineering techniques, making it a recombinant protein. It is widely used in research and medical applications due to its unique structure, activity, and potential therapeutic benefits.
The structure of Recombinant Human ADCY6 Protein is composed of a single polypeptide chain with a molecular weight of approximately 150 kDa. It consists of two major domains, the cytoplasmic catalytic domain and the transmembrane domain. The cytoplasmic catalytic domain is responsible for the enzymatic activity of the protein, while the transmembrane domain anchors the protein to the cell membrane.
The catalytic domain of Recombinant Human ADCY6 Protein contains several functional regions, including the ATP-binding site, the catalytic site, and the regulatory site. These regions work together to catalyze the conversion of ATP to cyclic AMP (cAMP), an important second messenger molecule that regulates various cellular processes. The transmembrane domain, on the other hand, contains several transmembrane helices that span the cell membrane and facilitate the interaction of the protein with other signaling molecules.
Recombinant Human ADCY6 Protein is a key player in the cAMP signaling pathway, which is involved in various physiological processes such as cell growth, differentiation, and metabolism. It acts as an adenylyl cyclase enzyme, catalyzing the conversion of ATP to cAMP in response to various stimuli, including hormones, neurotransmitters, and growth factors.
One of the unique features of Recombinant Human ADCY6 Protein is its high specificity towards calcium ions. It has been shown to be activated by calcium ions, which leads to an increase in cAMP production. This calcium-dependent activation of the protein is important in regulating the activity of other signaling molecules, such as protein kinase A (PKA) and exchange protein directly activated by cAMP (EPAC).
In addition to its role in the cAMP signaling pathway, Recombinant Human ADCY6 Protein has also been implicated in other cellular processes, such as cell migration and adhesion. Studies have shown that the protein interacts with other signaling molecules, such as integrins, to regulate these processes. This highlights the diverse functions of this protein in various cellular activities.
Due to its unique structure and activity, Recombinant Human ADCY6 Protein has a wide range of applications in both research and medical fields. In research, the protein is used as a tool to study the cAMP signaling pathway and its role in different cellular processes. It is also used to investigate the interaction of various signaling molecules and their effects on the activity of the protein.
In the medical field, Recombinant Human ADCY6 Protein has shown potential as a therapeutic target for various diseases. Studies have linked mutations in the gene encoding this protein to certain cardiovascular disorders, such as hypertension and heart failure. This has led to the development of drugs that target the activity of the protein, with the aim of treating these diseases.
Furthermore, Recombinant Human ADCY6 Protein has also been explored as a potential biomarker for certain diseases. Research has shown that the protein is present in higher levels in certain cancer cells, making it a potential diagnostic and prognostic marker for these types of cancer.
In summary, Recombinant Human ADCY6 Protein is a highly specialized enzyme with a unique structure and activity. It plays a crucial role in the cAMP signaling pathway and has diverse functions in various cellular processes. Its applications in research and medicine make it a valuable tool
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