scholarly article | Q13442814 |
P819 | ADS bibcode | 2013PLoSO...874813H |
P356 | DOI | 10.1371/JOURNAL.PONE.0074813 |
P932 | PMC publication ID | 3772892 |
P698 | PubMed publication ID | 24058631 |
P5875 | ResearchGate publication ID | 256931575 |
P50 | author | Hubert Hilbi | Q58981515 |
Thierry Soldati | Q40295458 | ||
Hajer Ouertatani-Sakouhi | Q43376212 | ||
P2093 | author name string | Nikolaus Ackermann | |
Christian Hedberg | |||
Pierre Cosson | |||
Hajer Ouertatani-Sakouhi | |||
Sébastien Kicka | |||
Christopher F Harrison | |||
Valentin Trofimov | |||
Kathrin Berschl | |||
P2860 | cites work | Legionella spp. outdoors: colonization, communication and persistence. | Q50913097 |
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The Legionella pneumophila phosphatidylinositol-4 phosphate-binding type IV substrate SidC recruits endoplasmic reticulum vesicles to a replication-permissive vacuole | Q81730696 | ||
Insights into Structural Network Responsible for Oligomerization and Activity of Bacterial Virulence Regulator Caseinolytic Protease P (ClpP) Protein | Q27676956 | ||
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Legionella pneumophila exploits PI(4)P to anchor secreted effector proteins to the replicative vacuole | Q33243973 | ||
The ClpP protease homologue is required for the transmission traits and cell division of the pathogen Legionella pneumophila | Q33532315 | ||
Molecular pathogenesis of infections caused by Legionella pneumophila | Q33825611 | ||
Inhibition of retrograde transport protects mice from lethal ricin challenge | Q34022109 | ||
Interaction between the legionnaires' disease bacterium (Legionella pneumophila) and human alveolar macrophages. Influence of antibody, lymphokines, and hydrocortisone | Q34613387 | ||
Ras/Raf signalling and emerging pharmacotherapeutic targets | Q34660771 | ||
Infection by tubercular mycobacteria is spread by nonlytic ejection from their amoeba hosts | Q34969920 | ||
Intracellular multiplication of Legionnaires' disease bacteria (Legionella pneumophila) in human monocytes is reversibly inhibited by erythromycin and rifampin | Q35202108 | ||
Minimization of the Legionella pneumophila genome reveals chromosomal regions involved in host range expansion | Q35202685 | ||
Inhibition of Legionella pneumophila multiplication within human macrophages by antimicrobial agents | Q35575694 | ||
Subversion of membrane transport pathways by vacuolar pathogens | Q35621027 | ||
Antimicrobial Susceptibility of Intracellular Legionella pneumophila | Q35672355 | ||
Microorganisms resistant to free-living amoebae | Q35745838 | ||
Dictyostelium as host model for pathogenesis | Q36023742 | ||
The biology and future prospects of antivirulence therapies | Q36397902 | ||
Legionella: macrolides or quinolones? | Q36466638 | ||
Exploiting quorum sensing to confuse bacterial pathogens | Q36667376 | ||
Legionella pneumophila - a human pathogen that co-evolved with fresh water protozoa. | Q36694141 | ||
Targeting virulence: a new paradigm for antimicrobial therapy | Q36914994 | ||
The Legionella pneumophila replication vacuole: making a cosy niche inside host cells | Q37326393 | ||
Legionella, protozoa, and biofilms: interactions within complex microbial systems. | Q37443935 | ||
Modulation of Host Cell Function byLegionella pneumophilaType IV Effectors | Q37798551 | ||
Secretive bacterial pathogens and the secretory pathway. | Q37849309 | ||
Tuberculosis pathogenesis and immunity | Q37952831 | ||
Pathogen vacuole purification from legionella-infected amoeba and macrophages | Q39245223 | ||
Development of highly potent inhibitors of the Ras-targeting human acyl protein thioesterases based on substrate similarity design | Q39476739 | ||
The Legionella pneumophila rpoS gene is required for growth within Acanthamoeba castellanii | Q39496795 | ||
Flagellum of Legionella pneumophila positively affects the early phase of infection of eukaryotic host cells | Q39519213 | ||
Intraphagocytic growth induces an antibiotic-resistant phenotype of Legionella pneumophila | Q39780962 | ||
The inositol polyphosphate 5-phosphatase OCRL1 restricts intracellular growth of Legionella, localizes to the replicative vacuole and binds to the bacterial effector LpnE. | Q39914102 | ||
The Legionella pneumophila response regulator LqsR promotes host cell interactions as an element of the virulence regulatory network controlled by RpoS and LetA. | Q40110647 | ||
Validation of the essential ClpP protease in Mycobacterium tuberculosis as a novel drug target | Q40596851 | ||
Evaluation of a human monocytic cell line THP-1 model for assay of the intracellular activities of antimicrobial agents against Legionella pneumophila | Q40851098 | ||
Growth of myxamoebae of the cellular slime mould Dictyostelium discoideum in axenic culture | Q41826297 | ||
New life for an old drug: the anthelmintic drug niclosamide inhibits Pseudomonas aeruginosa quorum sensing | Q42790739 | ||
Acanthamoeba polyphaga resuscitates viable non-culturable Legionella pneumophila after disinfection. | Q43347182 | ||
Dictyostelium discoideum strains lacking the RtoA protein are defective for maturation of the Legionella pneumophila replication vacuole | Q43515773 | ||
Sequence and genome context analysis of a new molecular class D beta-lactamase gene from Legionella pneumophila. | Q44121022 | ||
The mechanism of caseinolytic protease (ClpP) inhibition | Q44175173 | ||
Interactions of legionella effector proteins with host phosphoinositide lipids | Q44977588 | ||
Analysis of legionella infection by flow cytometry | Q45760946 | ||
Flotillin and RacH modulate the intracellular immunity of Dictyostelium to Mycobacterium marinum infection | Q46473864 | ||
Bioactive natural and semisynthetic latrunculins | Q46961520 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P433 | issue | 9 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | e74813 | |
P577 | publication date | 2013-01-01 | |
P1433 | published in | PLOS One | Q564954 |
P1476 | title | Exploring anti-bacterial compounds against intracellular Legionella | |
P478 | volume | 8 |
Q52350987 | Acanthamoeba and Dictyostelium as Cellular Models for Legionella Infection. |
Q52676415 | Antimycobacterial drug discovery using Mycobacteria-infected amoebae identifies anti-infectives and new molecular targets. |
Q90176619 | Identification of Anti-Mycobacterium and Anti-Legionella Compounds With Potential Distinctive Structural Scaffolds From an HD-PBL Using Phenotypic Screens in Amoebae Host Models |
Q40126421 | Inhibitors of Mycobacterium marinum virulence identified in a Dictyostelium discoideum host model |
Q37622087 | Intra-Species and Inter-Kingdom Signaling of Legionella pneumophila. |
Q37142298 | Metabolism of myo-Inositol by Legionella pneumophila Promotes Infection of Amoebae and Macrophages |
Q41577063 | Potent antimicrobial peptides against Legionella pneumophila and its environmental host, Acanthamoeba castellanii |
Q47736263 | Survey on medicinal plants traditionally used in Senegal for the treatment of tuberculosis (TB) and assessment of their antimycobacterial activity |
Q38156244 | The natural alternative: protozoa as cellular models for Legionella infection |
Q36381839 | Thymoquinone (TQ) inhibits the replication of intracellular Mycobacterium tuberculosis in macrophages and modulates nitric oxide production |
Q47573828 | Towards re-purposing BH3-mimetics in Legionella and viral infections |
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