Cytochrome c: occurrence and functions. 2006

Ivano Bertini, and Gabriele Cavallaro, and Antonio Rosato
Magnetic Resonance Center (CERM), University of Florence, Via L. Sacconi 6, 50019 Sesto Fiorentino, Italy. bertini@cerm.unifi.it

UI MeSH Term Description Entries
D008928 Mitochondria Semiautonomous, self-reproducing organelles that occur in the cytoplasm of all cells of most, but not all, eukaryotes. Each mitochondrion is surrounded by a double limiting membrane. The inner membrane is highly invaginated, and its projections are called cristae. Mitochondria are the sites of the reactions of oxidative phosphorylation, which result in the formation of ATP. They contain distinctive RIBOSOMES, transfer RNAs (RNA, TRANSFER); AMINO ACYL T RNA SYNTHETASES; and elongation and termination factors. Mitochondria depend upon genes within the nucleus of the cells in which they reside for many essential messenger RNAs (RNA, MESSENGER). Mitochondria are believed to have arisen from aerobic bacteria that established a symbiotic relationship with primitive protoeukaryotes. (King & Stansfield, A Dictionary of Genetics, 4th ed) Mitochondrial Contraction,Mitochondrion,Contraction, Mitochondrial,Contractions, Mitochondrial,Mitochondrial Contractions
D003574 Cytochrome c Group A group of cytochromes with covalent thioether linkages between either or both of the vinyl side chains of protoheme and the protein. (Enzyme Nomenclature, 1992, p539) Cytochromes Type c,Group, Cytochrome c,Type c, Cytochromes
D005057 Eukaryotic Cells Cells of the higher organisms, containing a true nucleus bounded by a nuclear membrane. Cell, Eukaryotic,Cells, Eukaryotic,Eukaryotic Cell
D006094 Gram-Positive Bacteria Bacteria which retain the crystal violet stain when treated by Gram's method. Gram Positive Bacteria
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001105 Archaea One of the three domains of life (the others being BACTERIA and Eukarya), formerly called Archaebacteria under the taxon Bacteria, but now considered separate and distinct. They are characterized by: (1) the presence of characteristic tRNAs and ribosomal RNAs; (2) the absence of peptidoglycan cell walls; (3) the presence of ether-linked lipids built from branched-chain subunits; and (4) their occurrence in unusual habitats. While archaea resemble bacteria in morphology and genomic organization, they resemble eukarya in their method of genomic replication. The domain contains at least four kingdoms: CRENARCHAEOTA; EURYARCHAEOTA; NANOARCHAEOTA; and KORARCHAEOTA. Archaebacteria,Archaeobacteria,Archaeon,Archebacteria
D001692 Biological Transport The movement of materials (including biochemical substances and drugs) through a biological system at the cellular level. The transport can be across cell membranes and epithelial layers. It also can occur within intracellular compartments and extracellular compartments. Transport, Biological,Biologic Transport,Transport, Biologic
D015394 Molecular Structure The location of the atoms, groups or ions relative to one another in a molecule, as well as the number, type and location of covalent bonds. Structure, Molecular,Molecular Structures,Structures, Molecular

Related Publications

Ivano Bertini, and Gabriele Cavallaro, and Antonio Rosato
July 2008, Nature reviews. Molecular cell biology,
Ivano Bertini, and Gabriele Cavallaro, and Antonio Rosato
January 2015, Pomeranian journal of life sciences,
Ivano Bertini, and Gabriele Cavallaro, and Antonio Rosato
November 1999, FEBS letters,
Ivano Bertini, and Gabriele Cavallaro, and Antonio Rosato
September 2020, International journal of molecular sciences,
Ivano Bertini, and Gabriele Cavallaro, and Antonio Rosato
November 1974, Canadian journal of biochemistry,
Ivano Bertini, and Gabriele Cavallaro, and Antonio Rosato
April 2012, Proteomics,
Ivano Bertini, and Gabriele Cavallaro, and Antonio Rosato
June 2021, Cells,
Ivano Bertini, and Gabriele Cavallaro, and Antonio Rosato
April 2024, Cell death and differentiation,
Ivano Bertini, and Gabriele Cavallaro, and Antonio Rosato
March 2019, Chemical science,
Ivano Bertini, and Gabriele Cavallaro, and Antonio Rosato
May 1980, Journal of bacteriology,
Copied contents to your clipboard!