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Elabscience

SKU:PKSH032183

Recombinant Human Cathepsin L2/CTSL2 Protein (His Tag)

Recombinant Human Cathepsin L2/CTSL2 Protein (His Tag)

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Introducing the Recombinant Human Cathepsin L2/CTSL2 Protein (His Tag), a cutting-edge product meticulously engineered to meet the highest standards of quality and performance. This protein, derived from advanced recombinant technology, exhibits exceptional purity and stability, making it an indispensable tool for various research applications.

The Recombinant Human Cathepsin L2/CTSL2 Protein (His Tag) boasts a unique His Tag, enabling facile purification and efficient detection. This feature ensures a streamlined workflow, saving valuable time and resources in the laboratory. With its superior affinity for histidine-binding resins, this protein guarantees optimal yield and purity, facilitating downstream applications with utmost precision.

This highly purified protein exhibits remarkable enzymatic activity, specifically targeting substrates associated with Cathepsin L2/CTSL2. Its exceptional specificity and efficiency make it an invaluable asset in studying the intricate mechanisms underlying various biological processes. Researchers can confidently rely on this protein to unravel the complexities of Cathepsin L2/CTSL2-mediated pathways, shedding light on crucial physiological and pathological phenomena.

The Recombinant Human Cathepsin L2/CTSL2 Protein (His Tag) is meticulously manufactured under stringent quality control measures, ensuring batch-to-batch consistency and reproducibility. Its exceptional stability guarantees long-term storage without compromising its integrity or functionality. This product is supplied in a convenient lyophilized form, preserving its activity and facilitating ease of use.

In summary, the Recombinant Human Cathepsin L2/CTSL2 Protein (His Tag) is a state-of-the-art research tool that offers unparalleled purity, stability, and functionality. With its remarkable enzymatic activity and specificity, this protein is poised to revolutionize the study of Cathepsin L2/CTSL2-related processes, empowering researchers to make groundbreaking discoveries in the field of life sciences.
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