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Identification of Noncatalytic Lysine Residues from Allosteric Circuits via Covalent Probes.
Bongard, Jens; Lorenz, Marian; Vetter, Ingrid R; Stege, Patricia; Porfetye, Arthur T; Schmitz, Anna Laura; Kaschani, Farnusch; Wolf, Alex; Koch, Uwe; Nussbaumer, Peter; Klebl, Bert; Kaiser, Markus; Ehrmann, Michael.
Afiliação
  • Bongard J; Microbiology, Faculty of Biology, Zentrum für Medizinische Biotechnologie (ZMB) , Universität Duisburg-Essen , Universitätsstr. 2 , 45117 Essen , Germany.
  • Lorenz M; Microbiology, Faculty of Biology, Zentrum für Medizinische Biotechnologie (ZMB) , Universität Duisburg-Essen , Universitätsstr. 2 , 45117 Essen , Germany.
  • Vetter IR; Max-Planck-Institute of Molecular Physiology , Otto-Hahn-Str. 11 , 44227 Dortmund , Germany.
  • Stege P; Max-Planck-Institute of Molecular Physiology , Otto-Hahn-Str. 11 , 44227 Dortmund , Germany.
  • Porfetye AT; Max-Planck-Institute of Molecular Physiology , Otto-Hahn-Str. 11 , 44227 Dortmund , Germany.
  • Schmitz AL; Chemical Biology, Faculty of Biology, Zentrum für Medizinische Biotechnologie (ZMB) , Universität Duisburg-Essen , Universitätsstr. 2 , 45117 Essen , Germany.
  • Kaschani F; Chemical Biology, Faculty of Biology, Zentrum für Medizinische Biotechnologie (ZMB) , Universität Duisburg-Essen , Universitätsstr. 2 , 45117 Essen , Germany.
  • Wolf A; Lead Discovery Center GmbH, Otto-Hahn-Str. 15 , 44227 Dortmund , Germany.
  • Koch U; Lead Discovery Center GmbH, Otto-Hahn-Str. 15 , 44227 Dortmund , Germany.
  • Nussbaumer P; Lead Discovery Center GmbH, Otto-Hahn-Str. 15 , 44227 Dortmund , Germany.
  • Klebl B; Lead Discovery Center GmbH, Otto-Hahn-Str. 15 , 44227 Dortmund , Germany.
  • Kaiser M; Chemical Biology, Faculty of Biology, Zentrum für Medizinische Biotechnologie (ZMB) , Universität Duisburg-Essen , Universitätsstr. 2 , 45117 Essen , Germany.
  • Ehrmann M; Microbiology, Faculty of Biology, Zentrum für Medizinische Biotechnologie (ZMB) , Universität Duisburg-Essen , Universitätsstr. 2 , 45117 Essen , Germany.
ACS Chem Biol ; 13(5): 1307-1312, 2018 05 18.
Article em En | MEDLINE | ID: mdl-29658704
Covalent modifications of nonactive site lysine residues by small molecule probes has recently evolved into an important strategy for interrogating biological systems. Here, we report the discovery of a class of bioreactive compounds that covalently modify lysine residues in DegS, the rate limiting protease of the essential bacterial outer membrane stress response pathway. These modifications lead to an allosteric activation and allow the identification of novel residues involved in the allosteric activation circuit. These findings were validated by structural analyses via X-ray crystallography and cell-based reporter systems. We anticipate that our findings are not only relevant for a deeper understanding of the structural basis of allosteric activation in DegS and other HtrA serine proteases but also pinpoint an alternative use of covalent small molecules for probing essential biochemical mechanisms.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Sondas Moleculares / Lisina Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Sondas Moleculares / Lisina Idioma: En Ano de publicação: 2018 Tipo de documento: Article