Protease Engineering

Protease engineering is the design or modification of protein-cleaving enzymes to control their specificity, activity, stability, or operating conditions, making them valuable tools in bioengineering. Researchers alter amino acid sequences through rational design, computational modeling, or directed evolution, then select variants whose active sites recognize desired substrates or retain catalytic function under conditions such as high temperature or extreme pH. Engineered proteases support industrial biocatalysis, food processing, detergents, pharmaceutical manufacturing, and biotechnology workflows. By linking sequence changes to enzyme performance, this field enables more efficient reactions, reduced processing costs, and tailored catalysts for applications that natural proteases cannot adequately serve.

Protease Engineering - Related Videos

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JoVE Journal - Biology
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Use of the Protease Fluorescent Detection Kit to Determine Protease Activity

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Cited by 15 •

2009

The Protease Fluorescent Detection Kit is designed for the measurement of protease activity using fluorometry. It is also suitable for detection of trace amounts of protease contamination. The method is based on the proteolytic hydroysis of a proprietary formulation of a FITC-labeled casein substrate.

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JoVE Journal - Biology
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Sigma's Non-specific Protease Activity Assay - Casein as a Substrate

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Cited by 414 •

2008

Proteases break peptide bonds. In the lab, it is often necessary to measure and/or compare the activity of proteases. Sigma's non-specific protease activity assay may be used as a standardized procedure to determine the activity of proteases.

Research

JoVE Journal - Biology

Determining Membrane Protein Topology Using Fluorescence Protease Protection (FPP)

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Cited by 18 •

2015

Here, we present a protocol to determine the orientation and topology of integral membrane proteins in living cells. This simple protocol relies on selective protease sensitivity of chimeras between the protein of interest and GFP.

Protease- and Acid-catalyzed Labeling Workflows Employing 18O-enriched Water

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Cited by 2 •

2013

Stable isotope labeling workflows employing 18O-enriched water (LeO-workflows) are versatile tools for quantitative and qualitative proteomics studies. In protease-assisted (PALeO) workflows, 18O-atoms are introduced by proteolytic cleavage and carboxyl oxygen exchange reactions mediated by proteases. In the acid-catalyzed (ALeO) workflow, 18O-atoms are introduced by carboxyl oxygen exchange at low pH.

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JoVE Journal - Biology
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Mouse Islet of Langerhans Isolation using a Combination of Purified Collagenase and Neutral Protease

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Cited by 103 •

2012

A detailed description of mouse islet isolation is described using the technique of in situ pancreatic ductal cannulation and perfusion of a combination of purified collagenase and neutral protease.

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