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Recombinant Human FXR1 protein, His-tagged

Cat.No. : FXR1-13053H
Product Overview : Recombinant Human FXR1 protein(1-353 aa), fused with a N-terminal 6*His Tag, was expressed in E. coli.
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Source : E. coli
Species : Human
Tag : His
Form : The purified protein was Lyophilized from sterile PBS (58mM Na2HPO4,17mM NaH2PO4, 68mM NaCl, pH7.4). 5 % trehalose and 5 % mannitol are added as protectant before lyophilization. The elution buffer contain 300mM imidazole.
Protein length : 1-353 aa
AA Sequence : MAELTVEVRGSNGAFYKGFIKDVHE DSLTVVFENNWQPERQVPFNEVRLP PPPDIKKEISEGDEVEVYSRANDQE PCGWWLAKVRMMKGEFYVIEYAACD ATYNEIVTFERLRPVNQNKTVKKNT FFKCTVDVPEDLREACANENAHKDF KKAVGACRIFYHPETTQLMILSASE ATVKRVNILSDMHLRSIRTKLMLMS RNEEATKHLECTKQLAAAFHEEFVV REDLMGLAIGTHGSNIQQARKVPGV TAIELDEDTGTFRIYGESADAVKKA RGFLEFVEDFIQVPRNLVGKVIGKN GKVIQEIVDKSGVVRVRIEGDNENK LPREDGMVPFVFVGTKESIGNVQVL LEY
Purity : 85%, by SDS-PAGE with Coomassie Brilliant Blue staining.
Storage : Short-term storage: Store at 2-8°C for (1-2 weeks).
Long-term storage: Aliquot and store at -20°C to -80°C for up to 3 months, reconstitution with sterile water and addition of an equal volume of glycerol. Avoid repeat freeze-thaw cycles.
Reconstitution : Reconstitute at 0.25 µg/μl in 200 μl sterile water for short-term storage.
After reconstitution with sterile water, if glycerol has no effect on subsequent experiments, it is recommended to add an equal volume of glycerol for long-term storage.
Gene Name : FXR1 fragile X mental retardation, autosomal homolog 1 [ Homo sapiens ]
Official Symbol : FXR1
Synonyms : FXR1; fragile X mental retardation, autosomal homolog 1; fragile X mental retardation syndrome-related protein 1; hFXR1p; FXR1P;
Gene ID : 8087
mRNA Refseq : NM_001013438
Protein Refseq : NP_001013456
MIM : 600819
UniProt ID : P51114

Not For Human Consumption!

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06/08/2023

    Highly recommended service, valuable for research projects.

    02/08/2022

      Exceptional expertise, elevates our research standards.

      02/18/2021

        Dependable results, a key to research success.

        Q&As (7)

        Ask a question
        What potential therapeutic applications arise from targeting FXR1 in muscular disorders? 10/20/2022

        Targeting FXR1 could offer therapeutic strategies for treating muscle disorders linked to RNA metabolism abnormalities.

        What is the primary role of FXR1 in RNA metabolism? 07/24/2022

        FXR1, an RNA-binding protein, is involved in regulating RNA metabolism, particularly mRNA processing and turnover.

        How does FXR1 interact with other RNA-binding proteins? 09/23/2021

        FXR1 interacts with a network of RNA-binding proteins, coordinating the regulation of mRNA metabolism.

        What role does FXR1 play in protein synthesis? 09/06/2021

        FXR1 plays a crucial role in modulating protein synthesis by influencing mRNA availability and translation.

        How does FXR1 contribute to mRNA stability? 03/22/2020

        It contributes to mRNA stability, affecting the lifespan and translation efficiency of mRNAs.

        What is the impact of altered FXR1 activity on muscle development? 01/29/2020

        Altered FXR1 activity can affect muscle development and function, potentially leading to muscle-related disorders.

        How do genetic variations in FXR1 affect cellular processes? 06/08/2019

        Genetic mutations in FXR1 can disrupt normal RNA processing and protein synthesis, impacting various cellular functions.

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