Wullich_2021_Chembiochem_22_733

Reference

Title : Stabilizing AqdC, a Pseudomonas Quinolone Signal-Cleaving Dioxygenase from Mycobacteria, by FRESCO-Based Protein Engineering - Wullich_2021_Chembiochem_22_733
Author(s) : Wullich SC , Wijma HJ , Janssen DB , Fetzner S
Ref : Chembiochem , 22 :733 , 2021
Abstract :

The mycobacterial PQS dioxygenase AqdC, a cofactor-less protein with an alpha/beta-hydrolase fold, inactivates the virulence-associated quorum-sensing signal molecule 2-heptyl-3-hydroxy-4(1H)-quinolone (PQS) produced by the opportunistic pathogen Pseudomonas aeruginosa and is therefore a potential anti-virulence tool. We have used computational library design to predict stabilizing amino acid replacements in AqdC. While 57 out of 91 tested single substitutions throughout the protein led to stabilization, as judged by increases in T/ of >2 degreesC, they all impaired catalytic activity. Combining substitutions, the proteins AqdC-G40K-A134L-G220D-Y238W and AqdC-G40K-G220D-Y238W showed extended half-lives and the best trade-off between stability and activity, with increases in T/ of 11.8 and 6.1 degreesC and relative activities of 22 and 72%, respectively, compared to AqdC. Molecular dynamics simulations and principal component analysis suggested that stabilized proteins are less flexible than AqdC, and the loss of catalytic activity likely correlates with an inability to effectively open the entrance to the active site.

PubMedSearch : Wullich_2021_Chembiochem_22_733
PubMedID: 33058333
Gene_locus related to this paper: mycab-x8en65

Related information

Gene_locus mycab-x8en65

Citations formats

Wullich SC, Wijma HJ, Janssen DB, Fetzner S (2021)
Stabilizing AqdC, a Pseudomonas Quinolone Signal-Cleaving Dioxygenase from Mycobacteria, by FRESCO-Based Protein Engineering
Chembiochem 22 :733

Wullich SC, Wijma HJ, Janssen DB, Fetzner S (2021)
Chembiochem 22 :733