Recombinant S. japonicum GST protein (ab70456)
Key features and details
- Expression system: Escherichia coli
- Purity: > 70% Affinity purified
- Suitable for: SDS-PAGE
Description
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Product name
Recombinant S. japonicum GST protein
See all GST proteins and peptides -
Purity
> 70 % Affinity purified.
Purified by affinity chromatography -
Expression system
Escherichia coli -
Accession
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Protein length
Protein fragment -
Animal free
No -
Nature
Recombinant -
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Species
Schistosoma japonicum -
Sequence
MSPILGYWKI KGLVQPTRLL LEYLEEKYEE HLYERDEGDK WRNKKFELGL EFPNLPYYID GDVKLTQSMA IIRYIADKHN MLGGCPKERA EISMLEGAVL DIRYGVSRIA YSKDFETLKV DFLSKLPEML KMFEDRLCHK TYLNGDHVTH PDFMLYDALD VVLYMDPMCL DAFPKLVCFK KRIEAIPQID KYLKSSKYIA WPLQGWQATF GGGDHPPKSD LVPRGSPGIH RD -
Predicted molecular weight
105 kDa -
Amino acids
1 to 226
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Description
Recombinant S. japonicum GST protein
Specifications
Our Abpromise guarantee covers the use of ab70456 in the following tested applications.
The application notes include recommended starting dilutions; optimal dilutions/concentrations should be determined by the end user.
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Applications
SDS-PAGE
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Form
Liquid -
Concentration information loading...
Preparation and Storage
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Stability and Storage
Shipped on dry ice. Upon delivery aliquot and store at -80ºC. Avoid freeze / thaw cycles.
pH: 7.50
Constituents: 0.00174% PMSF, 0.00385% DTT, 0.79% Tris HCl, 25% Glycerol (glycerin, glycerine), 0.87% Sodium chloride
General Info
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Alternative names
- Glutathione S Transferase
- Glutathione S-transferase class-mu 26 kDa isozyme
- GST
see all -
Relevance
GST (Glutathione S-Transferase) is a 26kDa protein encoded by the parasitic helminth Schistosoma japonicum and widely used in the pGEX family of GST plasmid expression vectors as a fusion protein with foreign proteins.
Protocols
To our knowledge, customised protocols are not required for this product. Please try the standard protocols listed below and let us know how you get on.
Datasheets and documents
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SDS download
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Datasheet download
References (11)
ab70456 has been referenced in 11 publications.
- Yang H et al. Targeting ubiquitin-specific protease 8 sensitizes anti-programmed death-ligand 1 immunotherapy of pancreatic cancer. Cell Death Differ 30:560-575 (2023). PubMed: 36539510
- Zhang X et al. NEK2 inhibition triggers anti-pancreatic cancer immunity by targeting PD-L1. Nat Commun 12:4536 (2021). PubMed: 34315872
- Chen CH et al. Thrombomodulin Functional Domains Support Osteoblast Differentiation and Bone Healing in Diabetes in Mice. J Bone Miner Res 35:1812-1823 (2020). PubMed: 32329910
- Lu W et al. Tetraspanin CD9 interacts with a-secretase to enhance its oncogenic function in pancreatic cancer. Am J Transl Res 12:5525-5537 (2020). PubMed: 33042435
- Cha JH et al. Metformin Promotes Antitumor Immunity via Endoplasmic-Reticulum-Associated Degradation of PD-L1. Mol Cell 71:606-620.e7 (2018). PubMed: 30118680