Products

CBGlyco™ Immobilized V-8 Protease Kit (Glyco-070CL)

V-8 Protease Kit contains Staphylococcus aureus V-8 protease immobilized on resin and three digestion buffers for specific cleavage at glutamic acid residues or cleavage at glutamic and aspartic acid residues.      

Specifications
Product Size
1 kit
Contents & storage
Sufficient For: 20 digestions of 2 mg protein samples
• Immobilized S. aureus Protease, 2.5 mL
• V-8 Digestion Buffer 1, 200 mL
• V-8 Digestion Buffer 2, 200 mL
• V-8 Digestion Buffer 3, 200 mL
• Resin Separators, 6

Store at 4°C.
BACKGROUND
Description
There are two major problems with any proteolytic digestion. The first problem is that the reaction must be quenched to stop the digestion, thus diluting out the sample. The second problem is that the sample is contaminated with the protease and possibly autodigested protease fragments. These problems are surmounted with immobilized V-8 protease. With immobilized proteases, no quenching is necessary and there are no problems with protease contamination of the sample or autodigestion of the protease. Simply separate the sample solution from the agarose matrix and these problems are eliminated.

Staphylococcus aureus V-8 protease, also known as endoproteinase Glu-C, has two pH optima, one at pH 4.0 and the other at pH 7.8, and it is specific for cleavage at the carboxy terminus of glutamic acid and aspartic acid residues. The protease is further specific for only glutamic digestion in buffers which do not contain phosphate at either pH optimum. Phosphate buffers at pH 7.8 will facilitate digestion at both glutamic and aspartic acid residues.

S. aureus V-8 protease is very stable, being able to retain its activity even in 6 M urea, 5.5 M guanidine·HCl, 0.5% SDS, or 0.5% SDS + 6 M urea at 0°C, pH 7.6. This is related to the fact that the native structure of the protease is stabilized mainly by electrostatic interactions, and not by hydrogen bonding and β-structures.
Properties

For lab research use only, not for diagnostic, therapeutic or any in vivo human use.

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