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FEBS Open Bio ; 14(10): 1731-1745, 2024 Oct.
Article de Anglais | MEDLINE | ID: mdl-39123319

RÉSUMÉ

Pectocin M1 (PM1), the bacteriocin from phytopathogenic Pectobacterium carotovorum which causes soft rot disease, has a unique ferredoxin domain that allows it to use FusA of the plant ferredoxin uptake system. To probe the structure-based mechanism of PM1 uptake, we determined the X-ray structure of full-length PM1, containing an N-terminal ferredoxin and C-terminal catalytic domain connected by helical linker, at 2.04 Å resolution. Based on published FusA structure and NMR data for PM1 ferredoxin domain titrated with FusA, we modeled docking of the ferredoxin domain with FusA. Combining the docking models with the X-ray structures of PM1 and FusA enables us to propose the mechanism by which PM1 undergoes dynamic domain rearrangement to translocate across the target cell outer membrane.


Sujet(s)
Ferrédoxines , Ferrédoxines/métabolisme , Ferrédoxines/composition chimique , Cristallographie aux rayons X , Bactériocines/composition chimique , Bactériocines/métabolisme , Pectobacterium carotovorum/métabolisme , Pectobacterium carotovorum/composition chimique , Conformation des protéines , Protéines bactériennes/composition chimique , Protéines bactériennes/métabolisme , Modèles moléculaires , Simulation de docking moléculaire
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