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Volumn 104, Issue 35, 2007, Pages 13960-13965
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Thermodynamically reengineering the listerial invasion complex InlA/E-cadherin
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Author keywords
Internalin; Listeria monocytogenes; Long distance synergy; Protein protein interaction; Structure based reengineering
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Indexed keywords
AMINO ACID;
INTERNALIN A;
UNCLASSIFIED DRUG;
UVOMORULIN;
ASPARAGINE;
BACTERIAL PROTEIN;
CADHERIN;
GLYCINE;
INTERNALIN PROTEIN, BACTERIA;
RECOMBINANT PROTEIN;
SERINE;
TYROSINE;
AMINO ACID SEQUENCE;
AMINO ACID SUBSTITUTION;
ARTICLE;
BINDING AFFINITY;
COMPLEX FORMATION;
CRYSTAL STRUCTURE;
CRYSTALLOGRAPHY;
DISSOCIATION CONSTANT;
ENTHALPY;
ENTROPY;
ISOTHERMAL TITRATION CALORIMETRY;
LISTERIA MONOCYTOGENES;
MACROMOLECULE;
MOLECULAR RECOGNITION;
NONHUMAN;
PRIORITY JOURNAL;
PROTEIN ENGINEERING;
PROTEIN PROTEIN INTERACTION;
QUANTITATIVE ANALYSIS;
SEQUENCE ANALYSIS;
THERMODYNAMICS;
BINDING SITE;
CALORIMETRY;
CHEMICAL STRUCTURE;
CHEMISTRY;
GENETIC ENGINEERING;
GENETIC VARIABILITY;
GENETICS;
HUMAN;
KINETICS;
METABOLISM;
PATHOGENICITY;
PROTEIN BINDING;
PROTEIN CONFORMATION;
BACTERIA (MICROORGANISMS);
LISTERIA MONOCYTOGENES;
AMINO ACID SUBSTITUTION;
ASPARAGINE;
BACTERIAL PROTEINS;
BINDING SITES;
CADHERINS;
CALORIMETRY;
GENETIC ENGINEERING;
GLYCINE;
HUMANS;
KINETICS;
LISTERIA MONOCYTOGENES;
MODELS, MOLECULAR;
PROTEIN BINDING;
PROTEIN CONFORMATION;
RECOMBINANT PROTEINS;
SERINE;
THERMODYNAMICS;
TYROSINE;
VARIATION (GENETICS);
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EID: 35348883314
PISSN: 00278424
EISSN: None
Source Type: Journal
DOI: 10.1073/pnas.0702199104 Document Type: Article |
Times cited : (22)
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References (35)
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