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C175

Recombinant Human SUMO1/Small ubiquitin-related modifier 1

10ug

80

72

现货

国产

C175

Recombinant Human SUMO1/Small ubiquitin-related modifier 1

50ug

240

216

现货

国产

C175

Recombinant Human SUMO1/Small ubiquitin-related modifier 1

500ug

1568

1411.2

现货

国产

C175

Recombinant Human SUMO1/Small ubiquitin-related modifier 1

1mg

2240

2016

现货

国产

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  • Catalog# C175
    Source E.coli
    Description Recombinant Human Small Ubiquitin-Related Modifier 1/SUMO1 is produced by our E. coli expression system. The target protein is expressed with sequence (Met1­Val101) of Human SUMO1.
    Names Small Ubiquitin-Related Modifier 1, SUMO-1, GAP-Modifying Protein 1, GMP1, SMT3 Homolog 3, Sentrin, Ubiquitin-Homology Domain Protein PIC1, Ubiquitin-Like Protein SMT3C, Smt3C, Ubiquitin-Like Protein UBL1, SUMO1, SMT3C, SMT3H3, UBL1
    Accession # P63165
    Formulation Lyophilized from a 0.2 μm filtered solution of 50mM Tris-HCl, 100mM NaCl, 1mM DTT, pH 8.5
    Shipping The product is shipped at ambient temperature.
    Reconstitution Always centrifuge tubes before opening. Do not mix by vortex or pipetting.
    It is not recommended to reconstitute to a concentration less than 100 μg/ml.
    Dissolve the lyophilized protein in 1X PBS.
    Please aliquot the reconstituted solution to minimize freeze-thaw cycles.
    Storage Lyophilized protein should be stored at < -20°C, though stable at room temperature for 3 weeks.
    Reconstituted protein solution can be stored at 4-7°C for 2-7 days.
    Aliquots of reconstituted samples are stable at < -20°C for 3 months.
    Purity Greater than 95% as determined by SEC-HPLC and reducing SDS-PAGE.
    Endotoxin Less than 0.1 ng/µg (1 IEU/µg).
    Amino Acid Sequence
    MGSSHHHHHHSSGLVPRGSHMSDQEAKPSTEDLGDKKEGEYIKLKVIGQDSSEIHFKVKMTTHLK KLKESYCQRQGVPMNSLRFLFEGQRIADNNTPKELGMEEEDVIEVYQEQTGGHSTV
    Background Small Ubiquitin-Related Modifier 1 (SUMO1) is an Ubiquitin-like protein that belongs to the ubiquitin family with SUMO subfamily. It is a family of small, related proteins that can be enzymatically attached to a target protein by a post-translational modification process termed sumoylation. SUMO1 functions in a manner similar to ubiquitin in that it is bound to target proteins as part of a post-translational modification system. This post-translational modification on lysine residues of proteins plays a crucial role in a number of cellular processes such as nuclear transport, DNA replication and repair, mitosis and signal transduction. SUMO1 is involved in a variety of cellular processes, such as nuclear transport, transcriptional regulation, apoptosis, and protein stability. SUMO1 is not active until the last four amino acids of the carboxy-terminus are cleaved off. Polymeric SUMO1 chains are also susceptible to polyubiquitination which functions as a signal for proteasomal degradation of modified proteins and may also regulate a network of genes involved in palate development.