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Journal Article
Journal of Experimental Medicine, ISSN 0022-1007, 06/2013, Volume 210, Issue 6, pp. 1265 - 1281
Journal Article
Glycobiology, ISSN 0959-6658, 11/2013, Volume 23, Issue 11, pp. 1281 - 1292
Human milk oligosaccharides (HMOS) are not digested in the proximal intestine. In distal intestine, HMOS collectively modify the microbiota, but the response... 
Glycosidase | Human milk oligosaccharides | Mutualist bacteria | Commensal bacteria | Organic acids | human milk oligosaccharides | DIARRHEA | STRATEGY | BIOCHEMISTRY & MOLECULAR BIOLOGY | ESCHERICHIA-COLI | SIALIC-ACID CATABOLISM | BIFIDOBACTERIAL CONSUMPTION | organic acids | VIBRIO-CHOLERAE | mutualist bacteria | MOUSE INTESTINE | glycosidase | commensal bacteria | BREAST-FED INFANTS | INHIBIT | PATHOGENS | Escherichia coli K12 - growth & development | Lactobacillus delbrueckii - isolation & purification | Fucose - metabolism | Humans | Bifidobacterium - isolation & purification | Clostridium - isolation & purification | Bifidobacterium - growth & development | Streptococcus thermophilus - growth & development | Escherichia coli K12 - metabolism | Microbiota | Streptococcus thermophilus - metabolism | Culture Media | Escherichia coli K12 - isolation & purification | Bifidobacterium - metabolism | Lactobacillus delbrueckii - metabolism | Streptococcus thermophilus - isolation & purification | Milk, Human - metabolism | alpha-L-Fucosidase - metabolism | Clostridium - growth & development | Sialic Acids - metabolism | Gastrointestinal Tract - microbiology | Lactobacillus delbrueckii - growth & development | Enterococcus faecalis - growth & development | Glycosylation | Bacteroides - growth & development | Oligosaccharides - metabolism | Bacteroides - metabolism | Enterococcus faecalis - isolation & purification | Enterococcus faecalis - metabolism | Bacterial Proteins - metabolism | Clostridium - metabolism | Bacteroides - isolation & purification | Hydrogen-Ion Concentration | Index Medicus | Original
Journal Article
Cell, ISSN 0092-8674, 2007, Volume 130, Issue 5, pp. 824 - 836
Natural transformation is a mechanism for genetic exchange in many bacterial genera. It proceeds through the uptake of exogenous DNA and subsequent... 
DNA | MICROBIO | DEOXYRIBONUCLEIC-ACID | PNEUMOCOCCUS | GRAM-POSITIVE BACTERIA | STREPTOCOCCUS-PNEUMONIAE | BACILLUS-SUBTILIS | SSB PROTEIN | BIOCHEMISTRY & MOLECULAR BIOLOGY | ECLIPSE COMPLEX | GENETIC-RECOMBINATION | SINGLE-STRANDED-DNA | COMPETENCE | CELL BIOLOGY | Genomic Instability | DNA, Bacterial - metabolism | Bacillus subtilis - genetics | Cell Nucleus - enzymology | DNA-Binding Proteins - metabolism | Cell Nucleus - metabolism | Transformation, Bacterial | Recombination, Genetic | Streptococcus pneumoniae - metabolism | Escherichia coli - metabolism | Streptococcus pneumoniae - genetics | Membrane Proteins - metabolism | Nucleic Acid Conformation | Rec A Recombinases - genetics | Recombinant Proteins - metabolism | Rec A Recombinases - metabolism | Escherichia coli - enzymology | Membrane Proteins - genetics | DNA, Single-Stranded - metabolism | Bacterial Proteins - genetics | Escherichia coli Proteins - metabolism | Bacillus subtilis - enzymology | DNA-Binding Proteins - genetics | DNA, Circular - metabolism | Escherichia coli - genetics | Exodeoxyribonucleases - metabolism | Escherichia coli Proteins - genetics | Protein Binding | Bacterial Proteins - metabolism | DNA, Superhelical - metabolism | Bacillus subtilis - metabolism | Streptococcus pneumoniae - enzymology | Evolution, Molecular | Proteins | Index Medicus
Journal Article
PLoS ONE, ISSN 1932-6203, 04/2015, Volume 10, Issue 4, pp. e0125377 - e0125377
Release of conserved cytoplasmic proteins is widely spread among Gram-positive and Gram-negative bacteria. Because these proteins display additional functions... 
FIBRONECTIN-BINDING PROTEIN | LISTERIA | ALPHA-ENOLASE | GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE | MULTIDISCIPLINARY SCIENCES | ESCHERICHIA-COLI | SURFACE | MOONLIGHTING PROTEINS | ENDOPEPTIDASE O PEPO | SUPEROXIDE-DISMUTASE | HUMAN PLASMINOGEN | Peptidoglycan - metabolism | Streptococcus pneumoniae - growth & development | Pneumococcal Infections - metabolism | Complement C1q - immunology | Humans | Bacterial Proteins - genetics | Protein Binding - immunology | Complement C1q - metabolism | Bacteriolysis - genetics | Protein Transport | Streptococcus pneumoniae - immunology | Glyceraldehyde-3-Phosphate Dehydrogenase (Phosphorylating) - metabolism | Pneumococcal Infections - immunology | Streptococcus pneumoniae - metabolism | Cell Wall - metabolism | Streptococcus pneumoniae - genetics | Bacterial Proteins - metabolism | Pneumococcal Infections - microbiology | Cell Membrane - metabolism | Enzymes | Bacteria | Pneumonia | Virulence (Microbiology) | Bacterial pneumonia | Streptococcus pneumoniae | Phosphorylation | Dehydrogenases | Cell walls | Virulence | Peptidoglycans | Gram-positive bacteria | Cell division | Streptococcus infections | Proteins | Microorganisms | Hypotheses | Streptococcus | Listeria | Choline | Culture media | Localization | Immune system | Index Medicus | Life Sciences | Biomolecules | Biochemistry, Molecular Biology
Journal Article
Journal Article
Nature, ISSN 0028-0836, 08/2010, Volume 466, Issue 7309, pp. 935 - 940
Despite the success of genomics in identifying new essential bacterial genes, there is a lack of sustainable leads in antibacterial drug discovery to address... 
BREAKAGE-REUNION DOMAIN | B-PROTEIN | BAD BUGS | MECHANISM | COLI DNA GYRASE | CRYSTAL-STRUCTURE | MULTIDISCIPLINARY SCIENCES | FUSION PROTEIN | INFECTIOUS-DISEASES-SOCIETY | CLEAVAGE | Staphylococcus aureus - enzymology | Crystallography, X-Ray | Structure-Activity Relationship | Quinolines - pharmacology | Quinolones - chemistry | Anti-Bacterial Agents - chemistry | Topoisomerase II Inhibitors | Apoenzymes - metabolism | DNA, Superhelical - chemistry | Drug Design | Binding Sites | Ciprofloxacin - metabolism | Drug Resistance | Catalytic Domain | Escherichia coli - enzymology | DNA Gyrase - chemistry | Quinolines - chemistry | Quinolones - metabolism | Models, Molecular | Anti-Bacterial Agents - metabolism | DNA - metabolism | Quinolines - metabolism | DNA Gyrase - metabolism | DNA - chemistry | Manganese - metabolism | Apoenzymes - chemistry | Ciprofloxacin - chemistry | Aspartic Acid - metabolism | Protein Conformation | Anti-Bacterial Agents - pharmacology | DNA, Superhelical - metabolism | Arginine - metabolism | DNA Cleavage | Antimitotic agents | Enzymes | Drug resistance in microorganisms | Topoisomerases | DNA | Genes | Research | Properties | Antineoplastic agents | Antibacterial agents | Staphylococcus aureus | Bacteria | Mutation | E coli | Deoxyribonucleic acid--DNA | Streptococcus infections | Index Medicus
Journal Article
Antimicrobial Agents and Chemotherapy, ISSN 0066-4804, 09/2016, Volume 60, Issue 9, pp. 5400 - 5411
Nosocomial infections with Enterococcus faecalis are an emerging health problem. However, drug efflux pumps contributing to intrinsic drug resistance are... 
BINDING CASSETTE TRANSPORTER | TRANSITION | ATP HYDROLYSIS | STREPTOCOCCUS-PNEUMONIAE | STRUCTURAL BASIS | FLEXIBILITY | RESISTANCE | SITES | MICROBIOLOGY | PHARMACOLOGY & PHARMACY | HIGH-THROUGHPUT CLONING | LACTOCOCCUS-LACTIS | Fluoroquinolones - chemistry | Sequence Deletion | Ethidium - chemistry | Protein Multimerization | Proteolipids - metabolism |