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Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 10/2010, Volume 107, Issue 40, pp. 17152 - 17157
Differences between the structures of bacterial, archaeal, and eukaryotic ribosomes account for the selective action of antibiotics. Even minor variations in... 
Ketolides | Antibiotics | Macrolides | Drug interactions | Ribosomes | Bacteria | Nucleotides | Electron density | Genetic mutation | Binding sites | Ribosome structure | Chloramphenicol | Telithromycin | Erythromycin | Clindamycin | PROTEIN | BACTERIAL RIBOSOME | RNA GENE | MULTIDISCIPLINARY SCIENCES | telithromycin | RESISTANCE MUTATIONS | CONFERRING RESISTANCE | erythromycin | DOMAIN-II | BINDING-SITE | chloramphenicol | MACROLIDE ANTIBIOTICS | ribosome structure | clindamycin | PLEUROMUTILINS | Haloarcula marismortui - genetics | Haloarcula marismortui - metabolism | Chloramphenicol - chemistry | Erythromycin - metabolism | Molecular Sequence Data | Ribosomes - metabolism | Deinococcus - metabolism | Deinococcus - genetics | Haloarcula marismortui - chemistry | X-Ray Diffraction | Anti-Bacterial Agents - chemistry | Base Sequence | Escherichia coli - metabolism | Ketolides - metabolism | Deinococcus - chemistry | Molecular Structure | Clindamycin - chemistry | Peptidyl Transferases - metabolism | Clindamycin - metabolism | Peptidyl Transferases - chemistry | Ribosomes - chemistry | Anti-Bacterial Agents - metabolism | Escherichia coli - chemistry | RNA, Ribosomal, 23S - chemistry | Erythromycin - chemistry | Escherichia coli - genetics | Ketolides - chemistry | RNA, Ribosomal, 23S - metabolism | Chloramphenicol - metabolism | Escherichia coli | Crystals | Genetic aspects | Research | Properties | Structure | Observations | Peptidyl transferases | Drugs | lincosamides | Pathogens | rRNA | rRNA 23S | Data processing | Ribosomal subunits | Ionizing radiation | Peptidyltransferase | Crystal structure | Tunnels | Biological Sciences
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 10/2010, Volume 107, Issue 40, pp. 17158 - 17163
The increasing prevalence of antibiotic-resistant pathogens reinforces the need for structures of antibiotic-ribosome complexes that are accurate enough to... 
Molecules | Antibiotics | Macrolides | Drug interactions | Ribosomes | Drug design | Biochemistry | Potassium | Functional groups | Lactones | Structure-based drug design | Crystal structure | structure-based drug design | DESIGN | RNA | MULTIDISCIPLINARY SCIENCES | KETOLIDES | MITOCHONDRIAL-DNA | NUCLEOTIDE | CHLORAMPHENICOL ACETYLTRANSFERASE | PEPTIDYL TRANSFERASE CENTER | crystal structure | RESISTANCE | BINDING-SITE | MACROLIDE ANTIBIOTICS | Haloarcula marismortui - genetics | Haloarcula marismortui - metabolism | Chloramphenicol - chemistry | Azithromycin - metabolism | Bacterial Proteins - chemistry | Erythromycin - metabolism | Ribosomes - metabolism | Thermus thermophilus - metabolism | Deinococcus - metabolism | Deinococcus - genetics | Haloarcula marismortui - chemistry | Thermus thermophilus - genetics | Anti-Bacterial Agents - chemistry | Ketolides - metabolism | Deinococcus - chemistry | Molecular Structure | Binding Sites | Thermus thermophilus - chemistry | Azithromycin - chemistry | Ribosomes - chemistry | Anti-Bacterial Agents - metabolism | Erythromycin - chemistry | Ketolides - chemistry | Bacterial Proteins - metabolism | Chloramphenicol - metabolism | Crystals | Chemical properties | Research | Properties | Bacterial genetics | Structure | Observations | Antibacterial agents | Pathogens | lactones | Azithromycin | Macrolide antibiotics | Chloramphenicol | Telithromycin | Models | Erythromycin | Conformation | ANTIBIOTICS | CHLORAMPHENICOL | ESCHERICHIA COLI | LACTONES | SPECIFICITY | ERYTHROMYCIN | ELECTRON DENSITY | RIBOSOMES | 60 APPLIED LIFE SCIENCES | PATHOGENS | Biological Sciences
Journal Article
BBA - Biomembranes, ISSN 0005-2736, 12/2017, Volume 1859, Issue 12, pp. 2420 - 2434
The availability of the first crystal structure of a bacterial member (SLC26Dg) of the solute carrier SLC26 family of anion transporters has allowed us to... 
Pathogenic mutations | Anion transporters | Trafficking | Homology modeling | SLC26 | Solute carriers | Transport | Membrane proteins | NONSYNDROMIC HEARING-LOSS | SULFATE-TRANSPORTER | PROCESSING DEFECT | BIOCHEMISTRY & MOLECULAR BIOLOGY | FUNCTIONAL-CHARACTERIZATION | N-GLYCOSYLATION | BIOPHYSICS | GENE | MOTOR PROTEIN | HUMAN PENDRIN | CYSTIC-FIBROSIS | STAS DOMAIN | Goiter, Nodular - genetics | Chloride-Bicarbonate Antiporters - genetics | Osteochondrodysplasias - pathology | Humans | Bacterial Proteins - chemistry | Substrate Specificity | Anion Transport Proteins - chemistry | Deinococcus - metabolism | Diarrhea - pathology | Deinococcus - genetics | Goiter, Nodular - metabolism | Osteochondrodysplasias - genetics | Membrane Transport Proteins - genetics | Goiter, Nodular - pathology | Membrane Transport Proteins - metabolism | Ion Transport | Protein Interaction Domains and Motifs | Binding Sites | Amino Acid Sequence | Protein Conformation, alpha-Helical | Chloride-Bicarbonate Antiporters - chemistry | Gene Expression | Hearing Loss, Sensorineural - metabolism | Diarrhea - congenital | Bacterial Proteins - genetics | Computational Biology | Metabolism, Inborn Errors - metabolism | Hearing Loss, Sensorineural - pathology | Models, Molecular | Hearing Loss, Sensorineural - genetics | Anion Transport Proteins - metabolism | Metabolism, Inborn Errors - genetics | Membrane Transport Proteins - chemistry | Chloride-Bicarbonate Antiporters - metabolism | Protein Conformation, beta-Strand | Diarrhea - genetics | Protein Binding | Bacterial Proteins - metabolism | Diarrhea - metabolism | Structural Homology, Protein | Mutation | Metabolism, Inborn Errors - pathology | Anion Transport Proteins - genetics | Osteochondrodysplasias - metabolism | Deafness | Disease transmission | Gene mutations | Analysis | Crystals | Genetic aspects | Glycoproteins | Structure | Protein binding | Sulfates
Journal Article
Scientific Reports, ISSN 2045-2322, 07/2015, Volume 5, Issue 1, p. 11677
Journal Article
PLoS ONE, ISSN 1932-6203, 04/2014, Volume 9, Issue 4, p. e94819
Journal Article
Nature Communications, ISSN 2041-1723, 12/2018, Volume 9, Issue 1, pp. 2734 - 14
Photoacoustic (PA) computed tomography (PACT) benefits from genetically encoded probes with photochromic behavior, which dramatically increase detection... 
MULTISPECTRAL OPTOACOUSTIC TOMOGRAPHY | REPORTER | CELLS | BACTERIOPHYTOCHROME | BIOSENSORS | OPTOGENETIC TOOLS | MULTIDISCIPLINARY SCIENCES | BIMOLECULAR FLUORESCENCE COMPLEMENTATION | PHYTOCHROMES | MICROSCOPY | Molecular Imaging - instrumentation | Brain Neoplasms - diagnostic imaging | Humans | Rhodopseudomonas - genetics | Brain Neoplasms - pathology | Spectroscopy, Near-Infrared - methods | Brain Neoplasms - metabolism | Deinococcus - metabolism | Deinococcus - genetics | Photoacoustic Techniques - instrumentation | Heterografts | Tomography - methods | Liver - diagnostic imaging | Escherichia coli - metabolism | HEK293 Cells | Protein Engineering | Tomography - instrumentation | Photoacoustic Techniques - methods | Female | Recombinant Proteins - metabolism | Gene Expression | Liver - metabolism | Bacterial Proteins - genetics | Brain Neoplasms - genetics | Molecular Imaging - methods | Recombinant Proteins - genetics | Plasmids - metabolism | Protein Interaction Mapping | Animals | Rhodopseudomonas - metabolism | Escherichia coli - genetics | Mice, Nude | Plasmids - chemistry | Cell Line, Tumor | Bacterial Proteins - metabolism | Mice | Spectroscopy, Near-Infrared - instrumentation | Medical imaging | Photochromism | Spatial discrimination | I.R. radiation | Proteins | Genetic code | Sensitivity | Computed tomography | Coding | Imaging | Complementation | Protein interaction | Spatial resolution | Tumors
Journal Article
Journal Article