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Volumn 358, Issue 6365, 2017, Pages 888-893
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The structural basis of flagellin detection by NAIP5: A strategy to limit pathogen immune evasion
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Author keywords
[No Author keywords available]
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Indexed keywords
FLAGELLIN;
INFLAMMASOME;
LIGAND;
MULTIPROTEIN COMPLEX;
NLR FAMILY APOPTOSIS INHIBITORY PROTEIN 5;
PROTEIN;
TOLL LIKE RECEPTOR 5;
UNCLASSIFIED DRUG;
APOPTOSIS REGULATORY PROTEIN;
CALCIUM BINDING PROTEIN;
FLAA PROTEIN, BACTERIA;
IPAF PROTEIN, MOUSE;
NAIP5 PROTEIN, MOUSE;
NEURONAL APOPTOSIS INHIBITORY PROTEIN;
APOPTOSIS;
BACTERIUM;
DEFENSE MECHANISM;
DETECTION METHOD;
HOST;
IMMUNE SYSTEM;
LIGAND;
PATHOGEN;
PROTEIN;
AMINO TERMINAL SEQUENCE;
ANTIGEN RECOGNITION;
ARTICLE;
CONFORMATIONAL TRANSITION;
CONTROLLED STUDY;
CRYOELECTRON MICROSCOPY;
IMMUNE EVASION;
INNATE IMMUNITY;
LEGIONELLA PNEUMOPHILA;
LIGAND BINDING;
MUTATION;
NONHUMAN;
PRIORITY JOURNAL;
PROTEIN CONFORMATION;
PROTEIN DOMAIN;
PROTEIN MOTIF;
PROTEIN STRUCTURE;
SURFACE PROPERTY;
ANIMAL;
CHEMISTRY;
GENETICS;
HEK293 CELL LINE;
HOST PATHOGEN INTERACTION;
HUMAN;
IMMUNOLOGY;
MOUSE;
ULTRASTRUCTURE;
ANIMALIA;
BACTERIA (MICROORGANISMS);
ANIMALS;
APOPTOSIS REGULATORY PROTEINS;
CALCIUM-BINDING PROTEINS;
CRYOELECTRON MICROSCOPY;
FLAGELLIN;
HEK293 CELLS;
HOST-PATHOGEN INTERACTIONS;
HUMANS;
IMMUNITY, INNATE;
INFLAMMASOMES;
LEGIONELLA PNEUMOPHILA;
MICE;
MUTATION;
NEURONAL APOPTOSIS-INHIBITORY PROTEIN;
PROTEIN DOMAINS;
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EID: 85034056063
PISSN: 00368075
EISSN: 10959203
Source Type: Journal
DOI: 10.1126/science.aao1140 Document Type: Article |
Times cited : (152)
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References (36)
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