• Media type: E-Article
  • Title: In vivo characterization of the bacterial intramembrane-cleaving protease RseP using the heme binding tag-based assay iCliPSpy
  • Contributor: Kupke, Thomas [VerfasserIn]; Götz, Rabea M. [VerfasserIn]; Richter, Florian M. [VerfasserIn]; Beck, Rainer [VerfasserIn]; Lolicato, Fabio [VerfasserIn]; Nickel, Walter [VerfasserIn]; Hopf, Carsten [VerfasserIn]; Brügger, Britta [VerfasserIn]
  • imprint: 18 March 2023
  • Published in: Communications biology ; 6(2023) vom: März, Artikel-ID 287, Seite 1-15
  • Language: English
  • DOI: 10.1038/s42003-023-04654-z
  • ISSN: 2399-3642
  • Identifier:
  • Keywords: Enzyme mechanisms ; Molecular modelling ; Proteases ; Sensors and probes
  • Origination:
  • Footnote:
  • Description: Regulated intramembrane proteolysis (RIP) describes the protease-dependent cleavage of transmembrane proteins within the hydrophobic core of cellular membranes. Intramembrane-cleaving proteases (I-CliPs) that catalyze these reactions are found in all kingdoms of life and are involved in a wide range of cellular processes, including signaling and protein homeostasis. I-CLiPs are multispanning membrane proteins and represent challenging targets in structural and enzyme biology. Here we introduce iCLiPSpy, a simple assay to study I-CLiPs in vivo. To allow easy detection of enzyme activity, we developed a heme-binding reporter based on TNFα that changes color after I-CLiP-mediated proteolysis. Co-expression of the protease and reporter in Escherichia coli (E. coli) results in white or green colonies, depending on the activity of the protease. As a proof of concept, we use this assay to study the bacterial intramembrane-cleaving zinc metalloprotease RseP in vivo. iCLiPSpy expands the methodological repertoire for identifying residues important for substrate binding or activity of I-CLiPs and can in principle be adapted to a screening assay for the identification of inhibitors or activators of I-CLiPs, which is of great interest for proteases being explored as biomedical targets.
  • Access State: Open Access