Elabscience
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Recombinant Human SIGLEC15 protein (His tag)
Recombinant Human SIGLEC15 protein (His tag)
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A DNA sequence encoding the Human SIGLEC15 protein (Q6ZMC9) (Met1-Thr263) was expressed with a C-His.
Introducing the Recombinant Human SIGLEC15 Protein (HIS TAG), a cutting-edge product meticulously engineered to meet the demands of advanced scientific research. This protein, derived from human sources, is produced through recombinant technology, ensuring utmost purity and quality.
The Recombinant Human SIGLEC15 Protein (HIS TAG) boasts a highly specific binding affinity to sialic acid, making it an invaluable tool for studying the intricate interactions between sialic acid and its receptors. With its HIS TAG fusion, this protein offers enhanced versatility and ease of use in various experimental applications.
This product is meticulously manufactured under stringent quality control measures, guaranteeing batch-to-batch consistency and reproducibility. Its exceptional purity, confirmed through rigorous testing, ensures minimal interference from contaminants, enabling accurate and reliable results.
The Recombinant Human SIGLEC15 Protein (HIS TAG) is supplied in a lyophilized form, preserving its stability and extending its shelf life. Its user-friendly reconstitution process allows for seamless integration into experimental protocols, facilitating efficient and time-effective research endeavors.
This protein is packaged in vials, each containing a precise quantity, ensuring optimal usage and minimizing wastage. Its comprehensive documentation, including a Certificate of Analysis, provides detailed information on its quality, purity, and storage conditions, enabling researchers to make informed decisions.
In summary, the Recombinant Human SIGLEC15 Protein (HIS TAG) is a superior research tool, meticulously crafted to meet the exacting standards of scientific investigations. Its exceptional purity, binding specificity, and ease of use make it an indispensable asset for elucidating the intricate mechanisms underlying sialic acid interactions.
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