Complementary methods for the identification of substrates of proteolysis

Methods Enzymol. 2014:544:359-80. doi: 10.1016/B978-0-12-417158-9.00014-5.

Abstract

Proteolysis describes the cleavage of proteins into smaller components, which in vivo occurs typically to either activate or impair the functionality of cellular proteins. Proteolysis can occur during cellular homeostasis or can be induced due to external stress stimuli such as heat, biological or chemical insult, and is mediated by the activity of cellular enzymes, namely, proteases. Proteolytic cleavage of proteins can influence protein activation by exposing an active site or disrupting inhibitor binding. Conversely, proteolytic cleavage of many proteins has also been shown to lead to protein degradation resulting in inactivation of the substrate. Thousands of proteolytic events are known to take place in regulated cellular processes such as apoptosis and pyroptosis, however, their individual contribution to these processes remains poorly understood. Additionally, many cellular homeostatic processes are regulated by proteolytic events, however, in some cases, few proteolytic substrates have been identified. To gain further insight into the mechanism of action of these cellular processes, and to characterize biomarkers of cell death and other pathological indications, it is imperative to utilize a complete arsenal of tools for studying proteolysis events in vivo and in vitro. In this chapter, we focus on alternative methodologies to N-terminomics for profiling substrates of proteolysis and describe an additional suite of tools including orthogonal biophysical separation techniques such as COFRADIC or GASSP, and affinity capture tools that can enrich for newly formed C-termini (C-terminomics) generated as a result of caspase-mediated proteolysis.

Keywords: Caspase; Immuno-affinity capture; Mass spectrometry; Proteolysis; Terminomics.

MeSH terms

  • Amino Acid Sequence
  • Animals
  • Caspases / metabolism*
  • Chromatography / methods
  • Electrophoresis, Polyacrylamide Gel / methods
  • Humans
  • Mass Spectrometry / methods*
  • Peptides / chemistry
  • Peptides / metabolism
  • Proteins / chemistry*
  • Proteins / metabolism
  • Proteolysis*
  • Proteomics / methods
  • Substrate Specificity

Substances

  • Peptides
  • Proteins
  • Caspases