IDE Human, Active

SKU:BHZ11000315
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ProSpec-Tany TechnoGene Ltd
ProSpec-Tany TechnoGene Ltd
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Overview
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Insulin-Degrading Enzyme Human Recombinant
Enzyme Type Protease
Species Human
Form Liquid
Expression System E. coli
Purity 90.0%
Gene Symbol IDE, Active
Source Escherichia Coli.
Options selector
Catalog no. Size
ENZ-1192-2µg 2µg
ENZ-1192-10µg 10µg
ENZ-1192-100µg 100µg
Available Options
2µg | 10µg | 100µg
Field Specification
Mfr No enz-1192
Activity
  • Specific activity is greater than 3
  • 000 pmol/min/ug in which 1 unit will convert 1.0 pmole of Mca-RPPGFSAFK(Dnp)-OH to MCA-Pro-Leu-OH per minute at pH 7.5 at 25°C.
Biological Activity Specific activity is greater than 3,000 pmol/min/ug in which 1 unit will convert 1.0 pmole of Mca-RPPGFSAFK(Dnp)-OH to MCA-Pro-Leu-OH per minute at pH 7.5 at 25°C.
Enzyme Type
  • Protease
Expression System
  • E. coli
Form Liquid
Formulation The IDE solution (0.5mg/ml) contains 10% Glycerol, 100mM NaCl, 0.05% Brij35 and 20mM Tris-HCl buffer (pH 7.5).
Product Type
  • Enzyme
Purity 90.0%
Source Escherichia Coli.
Species Human
Storage Store at 4°C if entire vial will be used within 2-4 weeks. Store, frozen at -20°C for longer periods of time. For long term storage it is recommended to add a carrier protein (0.1% HSA or BSA). Avoid multiple freeze-thaw cycles.
Target IDE, Active

Product Description

Insulin-Degrading Enzyme Human Recombinant

Background

Insulin-degrading enzyme (IDE) is a crucial protease that plays a significant role in maintaining glucose homeostasis by degrading insulin and other bioactive peptides. Dysregulation of IDE has been implicated in various metabolic disorders, particularly type 2 diabetes mellitus. IDE is also associated with the clearance of amyloid-beta peptides in the brain, making it relevant to Alzheimer's disease pathology. Studying the recombinant form of IDE is fundamental to understanding its functional mechanisms and exploring potential avenues for therapeutic interventions. The primary goal of this research is to express and purify recombinant IDE using diverse expression systems. Recombinant DNA techniques will be employed to construct expression vectors containing the IDE gene, followed by expression in bacterial, yeast, or mammalian cell-based systems. The recombinant IDE will be purified using affinity chromatography or other appropriate methods, facilitating subsequent biochemical and biophysical characterization. The second objective is to investigate the substrate specificity and catalytic activity of the purified IDE. In vitro enzymatic assays will be conducted to analyse the ability of the recombinant IDE to degrade insulin and other potential substrates. The effects of various factors, such as pH, temperature, and potential modulators, on IDE activity will be evaluated. Additionally, the interactions between IDE and its substrates will be explored using binding assays. The third objective is to elucidate the three-dimensional structure of the IDE recombinant using techniques like X-ray crystallography or nuclear magnetic resonance (NMR) spectroscopy. Structural insights into the active site and binding pockets of IDE will provide valuable information for understanding its substrate recognition and catalytic mechanisms. This knowledge could be instrumental in designing targeted therapeutic compounds. By characterizing the IDE recombinant, this research aims to contribute to our understanding of its role in insulin metabolism, glucose regulation, and potential therapeutic applications. The findings from this study may have implications for the development of novel treatments for diabetes and other related disorders.

Biological Activity

Specific activity is greater than 3,000 pmol/min/ug in which 1 unit will convert 1.0 pmole of Mca-RPPGFSAFK(Dnp)-OH to MCA-Pro-Leu-OH per minute at pH 7.5 at 25°C.

Specifications

Purity Greater than 90.0% as determined by SDS-PAGE.
Formulation The IDE solution (0.5mg/ml) contains 10% Glycerol, 100mM NaCl, 0.05% Brij35 and 20mM Tris-HCl buffer (pH 7.5).
Storage Store at 4°C if entire vial will be used within 2-4 weeks. Store, frozen at -20°C for longer periods of time. For long term storage it is recommended to add a carrier protein (0.1% HSA or BSA). Avoid multiple freeze-thaw cycles.
Expression System Escherichia Coli.

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Experience the power of Celltrypse™, c-LEcta's innovative enzyme solution for gentle and efficient cell dissociation. Request your free sample and discover a superior alternative for your cell culture workflows.

Try Celltrypse Free – Request Your Sample Today

Try Celltrypse Free – Request Your Sample Today

Experience the power of Celltrypse™, c-LEcta's innovative enzyme solution for gentle and efficient cell dissociation. Request your free sample and discover a superior alternative for your cell culture workflows.

Try Celltrypse Free – Request Your Sample Today