Mutanolysin

≥4000 units/mg protein (biuret)

  • Product Code: 98896
  CAS:    55466-22-3
Molecular Weight: Molecular Formula:
EC Number: MDL Number: MFCD00131635
Melting Point: Boiling Point:
Density: Storage Condition: −20°C
Product Description: Mutanolysin is widely used in biochemical research for its ability to break down bacterial cell walls, particularly those of Gram-positive bacteria. It is especially valuable in the study of peptidoglycan structure and function, as it cleaves specific bonds within the peptidoglycan layer. This enzyme is also employed in the preparation of protoplasts, which are cells stripped of their cell walls, enabling research on cellular processes without the barrier of the wall. Additionally, mutanolysin is utilized in the extraction of intracellular components from bacteria, facilitating the study of bacterial proteins, DNA, and other molecules. Its application extends to the development of antimicrobial strategies, as understanding cell wall degradation can inform the design of new antibiotics.
Product Specification:
Test Specification
APPEARANCE White to Off White Powder
Solubility Color Colorless to Light Yellow
Solubility Turbidity With or Without particles. 1mg/mL of buffer (0.05 M TES + 1 mM MgCl2 pH 7.0
unitsmg protein 4000
Infrared spectrum Conforms to Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
1000.000 10-20 days ฿6,430.00
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Mutanolysin
Mutanolysin is widely used in biochemical research for its ability to break down bacterial cell walls, particularly those of Gram-positive bacteria. It is especially valuable in the study of peptidoglycan structure and function, as it cleaves specific bonds within the peptidoglycan layer. This enzyme is also employed in the preparation of protoplasts, which are cells stripped of their cell walls, enabling research on cellular processes without the barrier of the wall. Additionally, mutanolysin is utilized in the extraction of intracellular components from bacteria, facilitating the study of bacterial proteins, DNA, and other molecules. Its application extends to the development of antimicrobial strategies, as understanding cell wall degradation can inform the design of new antibiotics.
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