Longzyme® Dehydrogenase malate CAS 9001-64-3

Category:

Dehydrogenase malate Application scenarios

1. 🧪 Industrial Biotechnology
• Production of Chiral Malic Acid (D- and L-forms)
High-purity chiral malic acid is produced efficiently and environmentally friendly through enzymatic resolution of DL-malic acid or microbial transformation.
• Improvement of Crop Traits
Genetic engineering is used to increase the expression of plant MDH to enhance its tolerance to acidic soil, aluminum toxicity, or saline-alkali land.

2. 🏥 Clinical Diagnosis
Serum Biomarker for Disease Diagnosis
Elevated serum MDH activity is associated with various diseases, such as liver diseases (e.g., viral hepatitis, liver cancer), acute myocardial infarction, and kidney diseases.

3. 🔬 Analysis and Detection
• Determination of Organic Acid Content in Food (e.g., L-malic acid)
Using the specific reaction catalyzed by MDH, enzymatic analysis (e.g., monitoring the change of NADH at 340 nm) is used to accurately determine the malic acid content in samples, for example, in wine analysis.
• Tool Enzyme in Scientific Research
Used as a tool in basic research for metabolic pathway studies, protein interaction studies, and enzymatic property investigations.

4. 💊 Drug Development Target
Potential Therapeutic Target for Various Diseases
Studies have shown that MDH is overexpressed or functionally abnormal in various cancers, metabolic diseases, nervous system diseases, and parasitic infections, making it an emerging target for drug development.

Description

Appearance: white amorphous powder
Specific activity: ≥40U/mg
Stability: stable for one year at -20℃
Molecular weight: approx. 35KD
Isoelectric point: 4.8
Molarity: 5.3×10-5M (L-Malate), 3.1×10-5M (Oxaloacetate),6.2×10-6M (NADH)
Inhibitor: not inhibited by sodium azide
pH stability: 3.0~8.5(25℃ 24h)
Optimal pH: 8.0~8.5
Optimal temperature: 65℃
Thermal stability: stable below 60℃
Storage temperature: -20℃
Enzyme activity definition: 1 unit of enzyme activity is equal to the amount of enzyme that produces 1 micromole of NAD+ in 1 minute at 37 degrees.

It can catalyze the conversion between malic acid and oxaloacetic acid. It is used in clinical tests for malic acid and glutamic transaminase. It is located in the mitochondrial matrix and is a matrix marker enzyme. It uses NAD+ as an electron acceptor. Broadly speaking, it also includes malic enzyme (EC1.1.1.38-40) that uses NAD+ or NADP+ as a acceptor to produce pyruvate and carbon dioxide. It also weakly reacts with NADP+ and can also dehydrogenate other hydroxy acids. It is widely found in mitochondria and bacterial cell membranes and is an enzyme in the tricarboxylic acid cycle. Due to the different sources of the enzyme, some of its properties are different.

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