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Changes in Active Site Loop Conformation Relate to the Transition toward a Novel Enzymatic Activity.
Jacquet, Pauline; Billot, Raphaël; Shimon, Amir; Hoekstra, Nathan; Bergonzi, Céline; Jenks, Anthony; Chabrière, Eric; Daudé, David; Elias, Mikael H.
Affiliation
  • Jacquet P; Gene&GreenTK, 19-21 Bd Jean Moulin, 13005, Marseille, France.
  • Billot R; Gene&GreenTK, 19-21 Bd Jean Moulin, 13005, Marseille, France.
  • Shimon A; University of Minnesota, Department of Biochemistry, Molecular Biology and Biophysics & Biotechnology Institute, St. Paul, MN, 55108, USA.
  • Hoekstra N; University of Minnesota, Department of Biochemistry, Molecular Biology and Biophysics & Biotechnology Institute, St. Paul, MN, 55108, USA.
  • Bergonzi C; University of Minnesota, Department of Biochemistry, Molecular Biology and Biophysics & Biotechnology Institute, St. Paul, MN, 55108, USA.
  • Jenks A; University of Minnesota, Department of Biochemistry, Molecular Biology and Biophysics & Biotechnology Institute, St. Paul, MN, 55108, USA.
  • Chabrière E; Gene&GreenTK, 19-21 Bd Jean Moulin, 13005, Marseille, France.
  • Daudé D; Aix Marseille University, IRD, APHM, MEPHI, IHU Méditerranée Infection, Marseille 13005, France.
  • Elias MH; Gene&GreenTK, 19-21 Bd Jean Moulin, 13005, Marseille, France.
bioRxiv ; 2023 May 26.
Article in En | MEDLINE | ID: mdl-37292757
ABSTRACT
Enzymatic promiscuity, the ability of enzymes to catalyze multiple, distinct chemical reactions, has been well documented and is hypothesized to be a major driver for the emergence of new enzymatic functions. Yet, the molecular mechanisms involved in the transition from one activity to another remain debated and elusive. Here, we evaluated the redesign of the active site binding cleft of the lactonase SsoPox using structure-based design and combinatorial libraries. We created variants with largely improved catalytic abilities against phosphotriesters, the best ones being > 1,000-fold better compared to the wild-type enzyme. The observed shifts in activity specificity are large, ~1,000,000-fold and beyond, since some variants completely lost their initial activity. The selected combinations of mutations have considerably reshaped the active site cavity via side chain changes but mostly through large rearrangements of the active site loops, as revealed by a suite of crystal structures. This suggests that specific active site loop configuration is critical to the lactonase activity. Interestingly, analysis of high-resolution structures hints at the potential role of conformational sampling and its directionality in defining an enzyme activity profile.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: BioRxiv Year: 2023 Document type: Article Affiliation country: France

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: BioRxiv Year: 2023 Document type: Article Affiliation country: France