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Use of the Protease Fluorescent Detection Kit to Determine Protease Activity
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Proteases: Pivot Points in Functional Proteomics.

Ingrid M Verhamme1, Sarah E Leonard2, Ray C Perkins3

  • 1Department of Pathology, Microbiology and Immunology, Vanderbilt University School of Medicine, Nashville, TN, USA. Ingrid.verhamme@vanderbilt.edu.

Methods in Molecular Biology (Clifton, N.J.)
|October 3, 2018
PubMed
Summary
This summary is machine-generated.

Proteases are essential enzymes regulating protein life cycles and cellular functions. Their dysregulation is linked to numerous diseases, making them key targets for novel therapeutics and biomarkers.

Keywords:
Autoimmune diseaseBiomarker developmentCancerCardiovascular diseaseCell migrationCell proliferationComplement systemCytosolic proteolysisDNA processingDNA repairDNA replicationDigestionDrug developmentDrug targetEpigeneticsHemostasisImmune regulationInfectious organismsInflammationIntramembrane proteolysisIntranuclear proteolysisMetabolic diseaseNeurodegenerative diseasePeptidasePrecision medicineProgrammed cell deathProteaseProtease inhibitorProtease promoterProtein secretionProteolysisSignalingStrokeTransmembrane proteolysis

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Area of Science:

  • Biochemistry
  • Molecular Biology
  • Systems Biology

Background:

  • Proteases are critical enzymes involved in protein processing, from activation to degradation.
  • Beyond digestion, proteases play fundamental roles in physiological regulation and cellular homeostasis.
  • Proteolytic activity is closely linked to various diseases, presenting therapeutic opportunities.

Purpose of the Study:

  • To examine the pivotal roles of proteolysis in physiological processes and diseases.
  • To detail the impact of proteolysis on drug and biomarker development.
  • To provide a comprehensive overview of protease functions across four major categories and 23 subcategories.

Main Methods:

  • Analysis of proteolysis across diverse physiological and pathological contexts.
  • Compilation and cross-comparison of 15 datasets on proteases, inhibitors, and substrates.
  • Review of over 300 references to support findings.

Main Results:

  • Proteases are implicated in fundamental physiological processes and disease pathogenesis.
  • Data reveal intersections between proteases, inhibitors, substrates, and various diseases.
  • Specific examples highlight protease involvement in hemostasis, immunity, cardiovascular disease, cancer, and neurodegeneration.

Conclusions:

  • Proteases act as crucial pivot points in functional proteomics.
  • Modulating proteolytic activity holds significant therapeutic and diagnostic potential.
  • The study underscores the broad and interconnected roles of proteases in health and disease.