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Elabscience
SKU:PKSV030117
Recombinant AcmNPV Envelope glycoprotein gp64(His Tag)
Recombinant AcmNPV Envelope glycoprotein gp64(His Tag)
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$855.00 USD
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Introducing the Recombinant Autographa californica multiple nucleopolyhedrovirus (AcMNPV) Envelope Glycoprotein GP64 (HIS TAG), a cutting-edge product designed to revolutionize the field of molecular biology. This meticulously engineered glycoprotein, derived from the AcMNPV virus, showcases a high level of purity and functionality, making it an indispensable tool for various research applications.
The Recombinant AcMNPV Envelope Glycoprotein GP64 (HIS TAG) boasts a unique feature - the incorporation of a HIS TAG. This tag facilitates easy purification and detection of the protein, ensuring a streamlined workflow and accurate results. With its exceptional affinity for metal ions, the HIS TAG enables efficient immobilization and purification through affinity chromatography techniques.
This product's recombinant nature ensures consistent and reliable performance, eliminating the variability often associated with traditional protein sources. The GP64 glycoprotein, a key component of the AcMNPV envelope, plays a crucial role in viral entry and fusion with host cells. By utilizing this recombinant glycoprotein, researchers gain unprecedented control over viral entry mechanisms, enabling in-depth studies on viral-host interactions and the development of novel therapeutic strategies.
The Recombinant AcMNPV Envelope Glycoprotein GP64 (HIS TAG) is meticulously manufactured using state-of-the-art techniques, ensuring the highest level of quality and purity. Rigorous quality control measures are implemented throughout the production process to guarantee a product of exceptional integrity and performance.
This product is supplied in a convenient and user-friendly format, allowing for easy integration into various experimental setups. Its versatility makes it suitable for a wide range of applications, including protein-protein interaction studies, viral entry assays, and vaccine development.
In summary, the Recombinant AcMNPV Envelope Glycoprotein GP64 (HIS TAG) represents a breakthrough in molecular biology research. Its exceptional purity, functionality, and recombinant nature make it an invaluable tool for scientists and researchers seeking to unravel the intricacies of viral-host interactions and develop innovative therapeutic interventions.
The Recombinant AcMNPV Envelope Glycoprotein GP64 (HIS TAG) boasts a unique feature - the incorporation of a HIS TAG. This tag facilitates easy purification and detection of the protein, ensuring a streamlined workflow and accurate results. With its exceptional affinity for metal ions, the HIS TAG enables efficient immobilization and purification through affinity chromatography techniques.
This product's recombinant nature ensures consistent and reliable performance, eliminating the variability often associated with traditional protein sources. The GP64 glycoprotein, a key component of the AcMNPV envelope, plays a crucial role in viral entry and fusion with host cells. By utilizing this recombinant glycoprotein, researchers gain unprecedented control over viral entry mechanisms, enabling in-depth studies on viral-host interactions and the development of novel therapeutic strategies.
The Recombinant AcMNPV Envelope Glycoprotein GP64 (HIS TAG) is meticulously manufactured using state-of-the-art techniques, ensuring the highest level of quality and purity. Rigorous quality control measures are implemented throughout the production process to guarantee a product of exceptional integrity and performance.
This product is supplied in a convenient and user-friendly format, allowing for easy integration into various experimental setups. Its versatility makes it suitable for a wide range of applications, including protein-protein interaction studies, viral entry assays, and vaccine development.
In summary, the Recombinant AcMNPV Envelope Glycoprotein GP64 (HIS TAG) represents a breakthrough in molecular biology research. Its exceptional purity, functionality, and recombinant nature make it an invaluable tool for scientists and researchers seeking to unravel the intricacies of viral-host interactions and develop innovative therapeutic interventions.
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