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100µg
Homo sapiens (Human)
AntibodySystem
AntibodySystem, Recombinant Proteins
Escherichia coli (E. coli)
Procaryotic expression
Recombinant Human SPINK1, N-GST is a genetically engineered protein that has gained significant attention in the field of drug discovery. This protein is a fusion of two naturally occurring proteins – Human SPINK1 and Glutathione S-transferase (GST). It is known for its potent inhibitory activity against various serine proteases, making it a promising drug target for a wide range of diseases.
The structure of Recombinant Human SPINK1, N-GST is a result of the fusion of two distinct proteins. The Human SPINK1 protein is a small, 79-amino acid peptide that belongs to the Kazal family of serine protease inhibitors. It contains six conserved cysteine residues that form three disulfide bonds, giving it a compact and stable structure. On the other hand, GST is a 26 kDa dimeric protein that is commonly used as a fusion partner in recombinant protein production. It consists of two subunits, each with an active site for binding to glutathione, a tripeptide molecule. The fusion of these two proteins results in a stable and functional recombinant protein with a molecular weight of approximately 55 kDa.
Recombinant Human SPINK1, N-GST exhibits potent inhibitory activity against various serine proteases, including trypsin, chymotrypsin, and elastase. This activity is attributed to the Kazal domain of the Human SPINK1 protein, which acts as a competitive inhibitor by binding to the active site of these enzymes. Additionally, the GST portion of the fusion protein provides stability and solubility, making it easier to produce and purify in large quantities. The inhibitory activity of Recombinant Human SPINK1, N-GST has been extensively studied and has shown promising results in inhibiting tumor cell growth, inflammation, and tissue damage.
The potential applications of Recombinant Human SPINK1, N-GST are vast, and it is currently being studied for its therapeutic potential in various diseases. One of the main applications of this protein is in cancer treatment. As serine proteases play a crucial role in tumor cell growth and metastasis, the inhibitory activity of Recombinant Human SPINK1, N-GST can help in suppressing tumor growth and invasion. It has also shown promising results in reducing inflammation and tissue damage in diseases such as pancreatitis and inflammatory bowel disease.
Moreover, Recombinant Human SPINK1, N-GST has also been studied as a potential diagnostic marker for various diseases. As its expression is altered in several pathological conditions, it can serve as a biomarker for early detection and monitoring of diseases.
In conclusion, Recombinant Human SPINK1, N-GST is a genetically engineered protein with a compact and stable structure, potent inhibitory activity against serine proteases, and promising applications in various diseases. Its unique fusion of two proteins makes it a versatile drug target with potential therapeutic and diagnostic applications. Further research and development of this protein can lead to the development of new and effective treatments for a wide range of diseases.
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