DL-Methionine Hydroxamate: A Key Biochemical Tool for Your Lab
In the realm of biochemical research, having access to well-characterized and reliable chemical reagents is fundamental to achieving accurate and reproducible results. DL-Methionine Hydroxamate, identified by CAS number 36207-43-9, is one such compound that has proven invaluable for a variety of laboratory applications, particularly in the study of enzyme mechanisms and cellular processes. NINGBO INNO PHARMCHEM CO.,LTD., a leading manufacturer and supplier, is committed to providing the scientific community with high-quality DL-Methionine Hydroxamate to support their critical research endeavors.
DL-Methionine Hydroxamate is a derivative of the essential amino acid methionine, distinguished by the presence of a hydroxamic acid group. This functional group confers upon the molecule significant metal-chelating properties, which are key to its utility as an enzyme inhibitor. Many enzymes, particularly metalloenzymes vital for a multitude of biological functions, rely on the presence of metal ions in their active sites. By binding to these metal ions, DL-Methionine Hydroxamate can modulate or block enzyme activity, providing researchers with a powerful tool to investigate enzyme function and discover new therapeutic targets.
One of the prominent applications of DL-Methionine Hydroxamate is its ability to inhibit peptide deformylase (PDF), an essential enzyme in bacterial protein synthesis. This inhibitory action makes it a subject of interest in the development of novel antibacterial agents, as targeting bacterial-specific enzymes offers a strategy to combat infections without harming human cells. Researchers in this field often need to buy DL-Methionine Hydroxamate to conduct detailed biochemical assays, screen potential drug candidates, and understand resistance mechanisms. As a trusted supplier in China, NINGBO INNO PHARMCHEM CO.,LTD. ensures that our DL-Methionine Hydroxamate is manufactured to high standards of purity, crucial for the reliability of these studies.
Beyond its specific applications in antibacterial research, DL-Methionine Hydroxamate serves as a versatile biochemical tool for a broader range of scientific inquiries. Its well-defined structure and predictable behavior when interacting with metalloenzymes make it an excellent reagent for investigating enzyme kinetics, exploring protein-ligand binding, and participating in coordination chemistry studies. For laboratories requiring this compound, understanding the enzyme inhibitor price is important, and NINGBO INNO PHARMCHEM CO.,LTD. offers competitive rates for high-quality products.
Sourcing essential research chemicals like DL-Methionine Hydroxamate from a reputable manufacturer of CAS 36207-43-9 is crucial for ensuring the validity of experimental outcomes. We pride ourselves on being a reliable partner for researchers worldwide, offering not only superior product quality but also responsive customer service and efficient logistics. We encourage you to get a quote from us to discover how our commitment to excellence can support your laboratory's needs.
In conclusion, DL-Methionine Hydroxamate is a vital compound for modern biochemical research, offering unique properties for enzyme inhibition studies and the development of new therapeutics. Its application as a biochemical tool is critical for advancing scientific understanding. NINGBO INNO PHARMCHEM CO.,LTD. is dedicated to supporting the scientific community by providing high-purity DL-Methionine Hydroxamate. Partner with us for your chemical sourcing needs and contribute to your next groundbreaking discovery.
Perspectives & Insights
Core Pioneer 24
“We encourage you to get a quote from us to discover how our commitment to excellence can support your laboratory's needs.”
Silicon Explorer X
“In conclusion, DL-Methionine Hydroxamate is a vital compound for modern biochemical research, offering unique properties for enzyme inhibition studies and the development of new therapeutics.”
Quantum Catalyst AI
“Its application as a biochemical tool is critical for advancing scientific understanding.”