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BRAND / VENDOR: Abcam

Abcam, ab266360, Human ESD knockout HEK-293T cell line

CATALOG NUMBER: ab266360
Precio habitual$0.99
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Product Description

Size: 2 x 1000000Cells / vial / 1000000Cells / vial
ESD KO cell line available to order. KO validated by Western blot. Free of charge wild type control available. Knockout achieved by using CRISPR/Cas9, 2 bp deletion in exon 4 and Insertion of the selection cassette in exon 4. To order both knockout and wild-type control cells: select 2 x 1000000Cells/vial. To order only knockout cells: select 1000000Cells/vial.
Key facts
Cell type:HEK-293T,
Species or organism:Human,
Tissue:Kidney,
Form:LiquidSee storage information,
Knockout validation:Sanger Sequencing,Western blot,
Mutation description:Knockout achieved by using CRISPR/Cas9, 2 bp deletion in exon 4 and Insertion of the selection cassette in exon 4

Product details:
We will provide viable cells that proliferate on revival.
This product is subject to limited use licenses from The Broad Institute, ERS Genomics Limited and Sigma-Aldrich Co. LLC, and is developed with patented technology. For full details of the licenses and patents please refer to our
limited use license
patent pages

Properties and Storage Information:
Gene name-ESD, Gene editing type-Knockout, Gene editing method-CRISPR technology, Knockout validation-Sanger Sequencing, Western blot, Shipped at conditions-Dry Ice, Appropriate short-term storage conditions--196°C, Appropriate long-term storage conditions--196°C

Supplementary Information:
This supplementary information is collated from multiple sources and compiled automatically.
ESD also known as esterase D or S-formylglutathione hydrolase is a protein with a mass of approximately 31 kDa. ESD is expressed in various tissues and cells including HEK-293T cells. Cell lysate studies often utilize the ESD line to analyze its enzymatic activity and expression profile. The protein plays a mechanical role in hydrolyzing esters of glutathione contributing to the detoxification processes within the cell.
Biological function summary
ESD contributes to maintaining cellular homeostasis through its role in detoxification and response to oxidative stress. It interacts with the degradation of S-formylglutathione a byproduct formed during alcohol metabolism. ESD is not typically associated with a larger protein complex but its enzymatic function is important for cellular health and efficient elimination of toxic metabolites protecting cells from damage and supporting metabolic pathways.
Pathways
ESD's enzymatic activity is integrated into the glutathione metabolism and alcohol metabolism pathways. Here ESD acts alongside enzymes like glutathione S-transferase to convert harmful aldehydes into less toxic forms aiding in cellular resilience. The protein helps modulate oxidative stress responses cooperating indirectly with other detoxification proteins within these pathways to maintain optimal cellular function.
ESD associations include certain forms of cancer and neurodegenerative diseases. Abnormal ESD expression or activity can result in disturbed detoxification leading to oxidative stress and cell damage. In cancer ESD has been implicated in tumor progression potentially linked with other proteins like GSTP1 which also participates in detoxification. In neurodegenerative conditions defective detoxification pathways involving ESD may contribute to neuronal injury and disease progression making it a potential target for therapeutic exploration.


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Collaboration

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