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Structure and Function of SPP/SPPL Proteases: Insights from Biochemical Evidence and Predictive Modeling.

Sabine HöppnerBernd SchröderRegina Fluhrer
Published in: The FEBS journal (2023)
More than 20 years ago, signal peptide peptidase (SPP) and its homologues, the signal peptide peptidase like (SPPL) proteases have been identified based on their sequence similarity to presenilins, a related family of intramembrane aspartyl proteases. Other than those for the presenilins, no high resolution structures for the SPP/SPPL proteases are available. Despite this limitation, over the years bioinformatical and biochemical data have accumulated, which altogether have provided a picture of the overall structure and topology of these proteases, their localization in the cell, the process of substrate recognition, their cleavage mechanism and their function. Recently, the AI-based structure prediction tool AlphaFold has added high confidence models of the expected fold of SPP/SPPL proteases. In this review, we summarize known structural aspects of the SPP/SPPL family as well as their substrates. Of particular interest are the emerging substrate recognition and catalytic mechanisms that might lead to the prediction and identification of more potential substrates and deeper insight into physiological and pathophysiological roles of the proteolysis.
Keyphrases
  • high resolution
  • mass spectrometry
  • amino acid
  • risk assessment
  • cell therapy
  • big data
  • electronic health record
  • dna binding
  • climate change
  • data analysis
  • human health