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1.
Nat Commun ; 11(1): 2864, 2020 06 08.
Article de Anglais | MEDLINE | ID: mdl-32513920

RÉSUMÉ

Legionella pneumophila is a bacterial pathogen that utilises a Type IV secretion (T4S) system to inject effector proteins into human macrophages. Essential to the recruitment and delivery of effectors to the T4S machinery is the membrane-embedded T4 coupling complex (T4CC). Here, we purify an intact T4CC from the Legionella membrane. It contains the DotL ATPase, the DotM and DotN proteins, the chaperone module IcmSW, and two previously uncharacterised proteins, DotY and DotZ. The atomic resolution structure reveals a DotLMNYZ hetero-pentameric core from which the flexible IcmSW module protrudes. Six of these hetero-pentameric complexes may assemble into a 1.6-MDa hexameric nanomachine, forming an inner membrane channel for effectors to pass through. Analysis of multiple cryo EM maps, further modelling and mutagenesis provide working models for the mechanism for binding and delivery of two essential classes of Legionella effectors, depending on IcmSW or DotM, respectively.


Sujet(s)
Protéines bactériennes/métabolisme , Legionella pneumophila/métabolisme , Systèmes de sécrétion de type IV/métabolisme , Animaux , Protéines bactériennes/composition chimique , Cellules CHO , Cricetulus , Modèles moléculaires , Mutation/génétique , Cartes d'interactions protéiques , Multimérisation de protéines , Reproductibilité des résultats , Spécificité du substrat , Systèmes de sécrétion de type IV/composition chimique , Systèmes de sécrétion de type IV/isolement et purification
2.
EMBO J ; 36(20): 3080-3095, 2017 10 16.
Article de Anglais | MEDLINE | ID: mdl-28923826

RÉSUMÉ

Type IV secretion (T4S) systems are versatile bacterial secretion systems mediating transport of protein and/or DNA T4S systems are generally composed of 11 VirB proteins and 1 VirD protein (VirD4). The VirB1-11 proteins assemble to form a secretion machinery and a pilus while the VirD4 protein is responsible for substrate recruitment. The structure of VirD4 in isolation is known; however, its structure bound to the VirB1-11 apparatus has not been determined. Here, we purify a T4S system with VirD4 bound, define the biochemical requirements for complex formation and describe the protein-protein interaction network in which VirD4 is involved. We also solve the structure of this complex by negative stain electron microscopy, demonstrating that two copies of VirD4 dimers locate on both sides of the apparatus, in between the VirB4 ATPases. Given the central role of VirD4 in type IV secretion, our study provides mechanistic insights on a process that mediates the dangerous spread of antibiotic resistance genes among bacterial populations.


Sujet(s)
Agrobacterium tumefaciens/ultrastructure , Structures macromoléculaires/isolement et purification , Structures macromoléculaires/ultrastructure , Systèmes de sécrétion de type IV/isolement et purification , Systèmes de sécrétion de type IV/ultrastructure , Agrobacterium tumefaciens/génétique , Conjugaison génétique , Microscopie électronique à transmission , Cartes d'interactions protéiques
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