Ornithine Aminotransferase(δ-OAT) Activity Assay Kit
Spectrophotometry
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description Product Description
The Ornithine Aminotransferase (δ-OAT) Activity Assay Kit is primarily used in research and diagnostic laboratories to measure the activity of the enzyme ornithine aminotransferase. This enzyme plays a crucial role in the urea cycle and amino acid metabolism, making the kit essential for studying metabolic disorders such as hyperornithinemia and gyrate atrophy of the choroid and retina. By quantifying δ-OAT activity, researchers can assess the efficiency of the urea cycle, investigate the biochemical pathways involved in ornithine metabolism, and evaluate the impact of genetic mutations or drug treatments on enzyme function. Additionally, the kit is valuable in clinical settings for diagnosing and monitoring patients with suspected metabolic diseases, aiding in the development of targeted therapeutic strategies. Its application extends to pharmaceutical research, where it is used to screen potential compounds that modulate δ-OAT activity for drug development.
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Ornithine Aminotransferase (δ-OAT) Activity Assay Kit
Product code: 55750
Method: Spectrophotometric method
Product Introduction
Proline is an important osmotic regulator that helps plants adapt to stress conditions. In higher plants, proline is synthesized through two pathways based on the initial substrate: the glutamate (Glu) pathway and the ornithine (Orn) pathway.
Ornithine aminotransferase (δ-OAT) is a key enzyme in the ornithine-based pathway for proline synthesis and plays an important role in plant stress adaptation. Ornithine and α-ketoglutarate undergo an aminotransferase reaction catalyzed by ornithine aminotransferase and NADH to generate pyrroline-5-carboxylic acid (P5C), while producing NAD. The change in absorbance at 340 nm reflects the level of ornithine aminotransferase activity.
Package Contents
| Size | Code | Component | Quantity |
|---|---|---|---|
| 50T | 55750.1 | Reagent One | 1 bottle |
| 50T | 55750.2 | Reagent Two | 1 bottle |
| 50T | 55750.3 | Reagent Three | 1 bottle |
| 50T | 55750.4 | Reagent Four | 1 bottle |
| 50T | 55750.5 | Extraction Solution | 1 bottle |
| 50T | 55750.m | Instruction Manual | 1 copy |
Quality and Safety Information
| Material or Package Name | Quality Standard | Main Toxicity |
|---|---|---|
| Reagent One | — | — |
| Reagent Two | — | — |
| Reagent Three | — | — |
| Reagent Four | — | — |
| Extraction Solution | - | -- |
Transportation and Storage
| Transportation | Transport with ice packs. |
|---|---|
| Storage | Store Reagent IV at -20 °C. Store the other components at 2-8 °C protected from light. Shelf life: 180 days. |
Instructions for Use
1. Enzyme Solution Extraction
Tissue Samples
Use a sample mass (g) to extraction solution volume (mL) ratio of 1:5-10. It is recommended to weigh approximately 0.1 g sample and add 1 mL extraction solution.
- Add the extraction solution to the sample.
- Homogenize in an ice bath.
- Centrifuge at 4 °C, 10000g for 10 min.
- Collect the supernatant and keep it on ice for testing.
Cell Samples
Use a cell count (104cells) to extraction solution volume (mL) ratio of 500-1000:1. It is recommended to add 500 × 104cells to 1 mL extraction solution.
- Disrupt the cells by ultrasonic treatment in an ice bath at 300 W, with 3 seconds sonication and 7 seconds interval, for a total time of 3 min.
- Centrifuge at 4 °C, 10000g for 10 min.
- Collect the supernatant and keep it on ice for testing.
Liquid Samples
Test liquid samples directly.
2. Reagent Preparation
- Before use, add 20 mL Reagent I to Reagent II and dissolve thoroughly. Store unused reagent at 4 °C.
- Before use, add 20 mL Reagent I to Reagent III and dissolve completely. Store unused reagent at 4 °C.
- Before use, add 10 mL Reagent I to each bottle of Reagent IV and dissolve completely. Prepare fresh and use immediately.
3. Measurement Procedure
- Preheat the spectrophotometer for 30 min and set the wavelength to 340 nm.
- Preheat the prepared Reagents II, III, and IV at 37 °C for 5 min.
- Use a 1 mL quartz cuvette. Add 300 μL Reagent II, 300 μL Reagent III, 300 μL Reagent IV, and 100 μL crude enzyme solution in sequence.
- Mix thoroughly.
- Record the initial absorbance at 340 nm as A1.
- React at 37 °C for 10 min and record the absorbance as A2.
- Calculate ΔA = A1 - A2.
Powdered reagents must be prepared by the user before use.
Activity Calculation
Calculated by Sample Protein Concentration
Unit definition: consumption of 1 nmol NADH per milligram of tissue protein per minute is defined as one unit of enzyme activity.
δ-OAT (nmol/min/mg prot) = ΔA ÷ (ε × d) × Vtotal reaction÷ (Vsample× Cpr) ÷ T = 160.77 × ΔA ÷ Cpr
Calculated by Sample Mass
Unit definition: consumption of 1 nmol NADH is defined as one enzyme activity unit.
δ-OAT (nmol/min/g fresh weight) = ΔA ÷ (ε × d) × Vtotal reaction÷ (W × Vsample÷ Vtotal sample) ÷ T = 160.77 × ΔA ÷ W
Calculated by Cell Number
Unit definition: consumption of 1 nmol NADH per 104cells per minute is defined as one enzyme activity unit.
δ-OAT (nmol/min/104cells) = ΔA ÷ (ε × d) × Vtotal reaction÷ (Vsample× cell number ÷ Vtotal sample) ÷ T = 160.77 × ΔA ÷ cell count
Calculated by Liquid Volume
Unit definition: consumption of 1 nmol NADH per milliliter of liquid per minute is defined as one enzyme activity unit.
δ-OAT (nmol/min/mL) = ΔA ÷ (ε × d) × Vtotal reaction÷ Vsample÷ T = 160.77 × ΔA
Formula Parameters
| Vtotal reaction | Total volume of the reaction system, 1 mL |
|---|---|
| ε | NADH molar extinction coefficient, 6.22 × 103L/mol/cm |
| d | Optical path length of the cuvette, 1 cm |
| Vsample | Volume of sample added, 0.1 mL |
| Vtotal sample | Volume of extract added, 1 mL |
| T | Reaction time, 10 min |
| Cpr | Sample protein concentration, mg/mL |
| W | Sample mass, g |
Precautions
- Before the formal assay, select 2-3 samples with large expected differences for a preliminary test.
- Instruments and supplies to be prepared by the user: balance, refrigerated centrifuge, mortar, UV-visible spectrophotometer, and 1 mL quartz cuvette.
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