Trypsin Protease Control

Trypsin protease control is the regulation of trypsin activity, a process that prevents uncontrolled protein digestion and helps maintain biological function. In organisms, inactive trypsinogen is activated to trypsin by proteolytic cleavage, while specific inhibitors and compartmentalization limit its activity; changes in pH and other conditions can also affect catalysis. Understanding this balance is important in biology because trypsin participates in protein digestion and activates additional digestive enzymes. Studying trypsin control also supports research on enzyme kinetics, protease regulation, digestive disorders, and laboratory methods that use trypsin to dissociate cultured cells or process proteins.

Trypsin Protease Control - Related Videos

Research

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.

Research

JoVE Journal - Biology

Trypsinizing and Subculturing Mammalian Cells

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Cited by 7 •

2008

As cells reach confluency, they must be subcultured or passaged. This video will demonstrate a procedure for subculturing both adherent and suspension cells.

Research

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

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Cited by 412 •

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.

Trypsin Digest Protocol to Analyze the Retinal Vasculature of a Mouse Model

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Cited by 59 •

2013

Trypsin digest is one of the most commonly used methods to analyze retinal vasculature. This manuscript describes the method in detail, including key alterations to optimize the technique and remove the non-vascular tissue while preserving the overall architecture of the vessels.

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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