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Recombinant Proteins
Recombinant Human CALN1, also known as Calneuron 1, is a protein that plays a crucial role in regulating calcium signaling in cells. This protein is encoded by the CALN1 gene and is found in various tissues such as the brain, heart, and skeletal muscles. In this article, we will discuss the structure, activity, and applications of Recombinant Human CALN1.
Recombinant Human CALN1 is a 28-kDa protein consisting of 247 amino acids. It belongs to the calneuron family of proteins, which are characterized by a conserved EF-hand calcium-binding domain. This domain is responsible for the calcium-binding activity of CALN1. The protein also contains a C-terminal coiled-coil domain that is involved in protein-protein interactions.
Recombinant Human CALN1 is primarily involved in regulating calcium signaling in cells. It acts as a calcium sensor and modulates the activity of various calcium channels and pumps. The EF-hand domain of CALN1 binds to calcium ions and undergoes a conformational change, which triggers its interaction with other proteins. This interaction can either enhance or inhibit the activity of calcium channels and pumps, thus regulating the influx and efflux of calcium ions in the cell.
Apart from its role in calcium signaling, Recombinant Human CALN1 has also been shown to interact with other proteins involved in cellular processes such as exocytosis, cell proliferation, and apoptosis. These interactions suggest that CALN1 may have a broader role in cellular functions beyond calcium signaling.
Due to its crucial role in regulating calcium signaling, Recombinant Human CALN1 has been extensively studied for its potential applications in various fields. Some of the major applications of this protein are discussed below.
Recombinant Human CALN1 has been widely used as a research tool to study the role of calcium signaling in various cellular processes. Its ability to modulate the activity of calcium channels and pumps makes it a valuable tool for investigating the mechanisms of calcium signaling.
Dysregulation of calcium signaling has been linked to various diseases such as neurodegenerative disorders, cardiovascular diseases, and cancer. Recombinant Human CALN1, with its role in modulating calcium signaling, has emerged as a potential therapeutic target for these diseases. Studies have shown that targeting CALN1 can have a beneficial effect on calcium signaling and may lead to the development of novel treatments for these diseases.
The expression of CALN1 has been found to be altered in certain diseases, making it a potential diagnostic marker. For example, increased expression of CALN1 has been observed in prostate cancer, while decreased expression has been associated with Alzheimer’s disease. Detection of CALN1 levels in patient samples may aid in the early diagnosis and monitoring of these diseases.
The role of Recombinant Human CALN1 in calcium signaling and its potential as a therapeutic target has led to its use in drug discovery. Researchers have been exploring small molecules and peptides that can modulate the activity of CALN1, which may lead to the development of novel drugs for various diseases.
In conclusion, Recombinant Human CALN1 is a 28-kDa protein that plays a crucial role in regulating calcium signaling in cells. Its structure, activity, and potential applications have been extensively studied, making it a valuable protein in the fields of research, therapeutics, and diagnostics. Further studies on this protein may lead to a better understanding of its role in cellular processes and the development of novel treatments
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