EMD-13466

Single-particle
2.15 Å
EMD-13466 Deposition: 25/08/2021
Map released: 20/04/2022
Last modified: 20/04/2022
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
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EMD-13466

Providencia stuartii Arginine decarboxylase (Adc), stack structure

EMD-13466

Single-particle
2.15 Å
EMD-13466 Deposition: 25/08/2021
Map released: 20/04/2022
Last modified: 20/04/2022
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Providencia stuartii
Sample: Stacked decamer form of P. stuartii Adc
Fitted models: 7pk6 (Avg. Q-score: 0.63)

Deposition Authors: Jessop M , Desfosses A , Bacia-Verloop M, Gutsche I
Structural and biochemical characterisation of the Providencia stuartii arginine decarboxylase shows distinct polymerisation and regulation.
PUBMED: 35383285
DOI: doi:10.1038/s42003-022-03276-1
ISSN: 2399-3642
Abstract:
Bacterial homologous lysine and arginine decarboxylases play major roles in the acid stress response, physiology, antibiotic resistance and virulence. The Escherichia coli enzymes are considered as their archetypes. Whereas acid stress triggers polymerisation of the E. coli lysine decarboxylase LdcI, such behaviour has not been observed for the arginine decarboxylase Adc. Here we show that the Adc from a multidrug-resistant human pathogen Providencia stuartii massively polymerises into filaments whose cryo-EM structure reveals pronounced differences between Adc and LdcI assembly mechanisms. While the structural determinants of Adc polymerisation are conserved only in certain Providencia and Burkholderia species, acid stress-induced polymerisation of LdcI appears general for enterobacteria. Analysis of the expression, activity and oligomerisation of the P. stuartii Adc further highlights the distinct properties of this unusual protein and lays a platform for future investigation of the role of supramolecular assembly in the superfamily or arginine and lysine decarboxylases.