Comparative genomics analysis of the metallomes.
Explore this paper's citation graph
Summary
Comparative genomics analysis of metallomes provides a foundation for the systemic level understanding of metal utilization as well as for investigating the general features, functions, and evolutionary dynamics of metal use in the three domains of life.
- Type
- article
- Published
- 2013-01-01
- Cited by
- 19
- References
- 183
- OpenAlex
- https://openalex.org/W120708166
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25355371
Keywords
Genomics, Comparative genomics, Computational biology, Biology, Evolutionary biology
References
- A delicate balance: homeostatic control of copper uptake and distribution.
- Nickel transport systems in microorganisms
- Copper-transporting ATPases ATP7A and ATP7B: cousins, not twins
- Copper homeostasis in bacteria.
- Coenzyme B12 (cobalamin)-dependent enzymes.
- Mechanism of Mo-dependent nitrogenase.
- Structure of human semicarbazide-sensitive amine oxidase/vascular adhesion protein-1.
- Bmc Microbiology a Dna Element Recognised by the Molybdenum-responsive Transcription Factor Mode Is Conserved in Proteobacteria, Green Sulphur Bacteria and Archaea
- Reconstruction of regulatory and metabolic pathways in metal-reducing δ-proteobacteria
- Genetic analysis of the modABCD (molybdate transport) operon of Escherichia coli
- Cobalamin‐dependent methionine synthase
- Comparative genomics of regulation of heavy metal resistance in Eubacteria
- Blue copper-binding domains.
- A novel type of catalytic copper cluster in nitrous oxide reductase
- Purification and properties of dimethylsulfoxide reductase containing a molybdenum cofactor from a photodenitrifier, Rhodopseudomonas sphaeroides f.s. denitrificans.
- Maturation of hydrogenases.
- Microbial ureases: significance, regulation, and molecular characterization.
- Cloning, sequencing, and expression of the gene encoding methylmalonyl-coenzyme A mutase from Streptomyces cinnamonensis
- Integrative aspects of zinc transporters.
- Review of the scientific basis for establishing the essentiality of trace elements
Cited by
- Mechanisms of copper homeostasis in bacteria
- Fluorescent Sensors for Measuring Metal Ions in Living Systems
- Hidden relationships between metalloproteins unveiled by structural comparison of their metal sites
- Redox Pioneer: Professor Vadim N. Gladyshev
- MetalPredator: a web server to predict iron-sulfur cluster binding proteomes
- meta‐Benziporphodimethenes: New Cell‐Imaging Porphyrin Analogue Molecules
- The Role of Intermetal Competition and Mis-Metalation in Metal Toxicity.
- Biogeochemical cycling of copper in the Northeast Pacific Ocean : role of marine heterotrophic bacteria
- A ratiometric iron probe enables investigation of iron distribution within tumour spheroids.
- Metallomics: The Science of Biometals and Biometalloids.
- Comparative genomics and metagenomics of the metallomes.
- Recognition, mechanistic investigation and applications for the detection of biorelevant Cu2+/Fe2+/Fe3+ ions by ruthenium(II)-polypyridyl based fluorescent sensors.
- Recent Advances in Colorimetric and Fluorescent Chemosensors for Ionic Species: Design, Principle and Optical Signalling Mechanism
- The quintessence of metallomics: a harbinger of a different life science based on the periodic table of the bioelements
- Co-evolution-based prediction of metal-binding sites in proteomes by machine learning
- Recent Advancements in Coumarin Based Colorimetric and Fluorescent Chemosensors
- Hunting down zinc(II)-binding sites in proteins with distance matrices
- Co-evolution-based Metal-binding Residue Prediction with Graph Neural Networks
- Copper—A Modern Bioelement
- Comparative Transcriptome Analysis Reveals Tissue-Specific Expression and Conservation of Mitochondrial Metal and Cofactor Genes in Buffalo
Related papers
- Comparative genomics for detecting human disease genes.
- Comparative and functional genomics of wheat
- Leveraging comparative genomics to uncover alien genes in bacterial genomes
- Advances involving the use of comparative genomics to study the evolution of Giardia lamblia evolution
- Comparative genomics: digging for data.
- Comparative Genomics in Molecular Evolution of Bacteria