Albert-Ludwigs-Universität Freiburg
GRK 2606 - ProtPath: Structured Doctoral Training in Proteolysis
Logo
Erweiterte Suche…
Sie sind hier: Startseite
Info

Übersicht

Eine Übersicht der verfügbaren Artikel dieser Webseite. Bewegen Sie den Mauszeiger über einen Artikel und lassen Sie ihn dort für einige Sekunden, um eine Beschreibung des Artikels zu erhalten.
  • Link What is ProtPath?
  • Application and open positions
  • Research projects
    • P1: Substrate-like protease probes
    • P2: Dipeptidyl-peptidases in cell signalling
    • P3: Proteases in inflammasome activity
    • P4: Novel caspase functions
    • P5: Deubiquinating enzymes in cell regulation
    • P6: Proteases in autophagy initiation
    • P7: Proteases in cell survival
    • P8: Orphan proteases of mitochondria
    • P9: Proteases for essential lysosome functions
    • P10: Exopeptidases in cell communication
    • P11: Proteases in mitochondrial protein quality control
    • P12: Improved C-terminomics for protease substrate discovery
  • Doctoral Researchers
  • Reseachers
    • Matthias Eder
    • Ruth Geiss-Friedlander
    • Olaf Groß
    • Georg Häcker
    • Klaus-Peter Knobeloch
    • Claudine Kraft
    • Ulrich Maurer
    • Chris Meisinger
    • Thomas Reinheckel
    • Oliver Schilling
    • Pitter Huesgen
    • Nora Vögtle (member 2021-2023)
  • Contact
  • News and events
  • past events
  • Publications of ProtPath doctoral researchers
  • International Proteolysis Society (IPS) Symposium: Proteases in SARS-CoV2 Infections
  • ProtPath Annual Doctoral Researcher Achievement Award
  • Pictures
  • ProtPath Career Evening 2024
  • Career Paths in Life Sciences lecture series WS24/25
  • Startseite
  • Schnellzugriff
    • Link What is ProtPath?
    • Application and open positions
    • Research projects
      • P1: Substrate-like protease probes
      • P2: Dipeptidyl-peptidases in cell signalling
      • P3: Proteases in inflammasome activity
      • P4: Novel caspase functions
      • P5: Deubiquinating enzymes in cell regulation
      • P6: Proteases in autophagy initiation
      • P7: Proteases in cell survival
      • P8: Orphan proteases of mitochondria
      • P9: Proteases for essential lysosome functions
      • P10: Exopeptidases in cell communication
      • P11: Proteases in mitochondrial protein quality control
      • P12: Improved C-terminomics for protease substrate discovery
    • Doctoral Researchers
    • Reseachers
      • Matthias Eder
      • Ruth Geiss-Friedlander
      • Olaf Groß
      • Georg Häcker
      • Klaus-Peter Knobeloch
      • Claudine Kraft
      • Ulrich Maurer
      • Chris Meisinger
      • Thomas Reinheckel
      • Oliver Schilling
      • Pitter Huesgen
      • Nora Vögtle (member 2021-2023)
    • Contact
    • News and events
    • past events
    • Publications of ProtPath doctoral researchers
    • International Proteolysis Society (IPS) Symposium: Proteases in SARS-CoV2 Infections
    • ProtPath Annual Doctoral Researcher Achievement Award
    • Pictures
    • ProtPath Career Evening 2024
    • Career Paths in Life Sciences lecture series WS24/25
Navigation
  • Link What is ProtPath?
  • Application and open positions
  • Research projects
  • Doctoral Researchers
  • Reseachers
  • Contact
  • News and events
  • past events
  • Publications of ProtPath doctoral researchers
  • International Proteolysis Society (IPS) Symposium: Proteases in SARS-CoV2 Infections
  • ProtPath Annual Doctoral Researcher Achievement Award
  • Pictures
  • ProtPath Career Evening 2024
  • Career Paths in Life Sciences lecture series WS24/25
  • Übersicht
  • Barrierefreiheit
  • Impressum
  • Übersicht
  • Barrierefreiheit
  • Impressum
A A A
Copyright © 2025 Universität Freiburg
  • Anmelden
Quelle: GRK 2606 - ProtPath: Structured Doctoral Training in Proteolysis
https://www.protpath.uni-freiburg.de/ ( 15.06.2025 )