Cat: IPD-X28422

Recombinant Human GPS1 Protein (Baculovirus)

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Analytical Data

  • Gene name

    GPS1

  • Application

    SPRMSTBLIITCELISACELL ASSAYDRUG SCREENING

  • Alternative Names

    COPS1; CSN1

  • Species

    Human

  • Source

    Baculovirus

  • Tag

    Tag Free

  • Purity

    Greater than 90% as determined by SDS-PAGE.

  • Uniprot

    Q13098-4

  • Expression Region

    M1-M491

  • Protein Length

    Full Length of Isoform-4

  • Endotoxin

    < 1.0 EU per μg protein as determined by the LAL method.

  • Form

    Freeze-dried powder

  • Buffer formulation

    PBS, pH7.4, containing 0.01% SKL, 1mM DTT, 5% Trehalose and Proclin300.

  • Reconstitution

    Reconstitute in ddH2O to a concentration of 0.1-0.5 mg/mL. Do not vortex.

  • Customization

    Site-directed mutagenesis Custom tag design Custom buffer formulation Custom full-length protein production

  • Stability Test

    The thermal stability is described by the loss rate. The loss rate was determined by accelerated thermal degradation test, that is, incubate the protein at 37℃ for 48h, and no obvious degradation and precipitation were observed. The loss rate isless than 8% within the expiration date under appropriate storage condition.

  • Storage & Shelf Life

    Samples are stable for up to twelve months from date of receipt at -20℃ to -80℃. Store it under sterile conditions at -20℃ to -80℃. It is recommended that the protein be aliquoted for optimal storage. Avoid repeated freeze-thaw cycles.

  • Shipping

    In general, recombinant proteins are supplied as lyophilized powder and shipped at ambient temperature. For bulk packages, the proteins are provided as frozen liquid and shipped with blue ice, unless otherwise requested by the customer.

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Protein Description

The research on GPS1 (GPA1-like protein 1) recombinant protein is primarily driven by its significant role in various biological processes, particularly in plant physiology and stress response. GPS1 is a key component in the signaling pathways that govern plant growth and development, as well as the response to environmental stresses such as drought and salinity. Understanding the molecular mechanisms mediated by GPS1 can help elucidate how plants adapt to changing environmental conditions. Recombinant protein technology allows for the production of high quantities of GPS1, enabling detailed functional studies and facilitating investigations into its interactions with other proteins and cellular components. This research is particularly relevant in the context of increasing challenges in agriculture, where enhancing plant resilience is crucial for maintaining crop yields in the face of climate change. Moreover, by studying GPS1’s structure and function through recombinant protein approaches, scientists can identify potential targets for genetic engineering aimed at improving stress tolerance in plants. Overall, the exploration of GPS1 recombinant protein is fundamental for advancing our understanding of plant biology and developing innovative strategies to enhance agricultural sustainability.

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