Microtubule nucleation by gamma-tubulin-containing rings in the centrosome. 1995

M Moritz, and M B Braunfeld, and J W Sedat, and B Alberts, and D A Agard
Department of Biochemistry & Biophysics, University of California at San Francisco 94143-0448, USA.

The microtubule cytoskeleton of animal cells does not assemble spontaneously, but instead requires the centrosome. This organelle consists of a pair of centrioles surrounded by a complex collection of proteins known as the pericentriolar material (PCM). The PCM is required for microtubule nucleation. The minus, or slow-growing, ends of microtubules are embedded in the PCM and the plus, or fast-growing, ends project outwards into the cytoplasm during interphase, or into the spindle apparatus during mitosis. gamma-Tubulin is the only component of the PCM that is so far implicated in microtubule nucleation. Here we use immuno-electron microscopic tomography to show that gamma-tubulin is localized in ring structures in the PCM of purified centrosomes without microtubules. When these centrosomes are used to nucleate microtubule growth, gamma-tubulin is localized at the minus ends of the microtubules. We conclude that microtubule-nucleating sites within the PCM are ring-shaped templates that contain multiple copies of gamma-tubulin.

UI MeSH Term Description Entries
D007150 Immunohistochemistry Histochemical localization of immunoreactive substances using labeled antibodies as reagents. Immunocytochemistry,Immunogold Techniques,Immunogold-Silver Techniques,Immunohistocytochemistry,Immunolabeling Techniques,Immunogold Technics,Immunogold-Silver Technics,Immunolabeling Technics,Immunogold Silver Technics,Immunogold Silver Techniques,Immunogold Technic,Immunogold Technique,Immunogold-Silver Technic,Immunogold-Silver Technique,Immunolabeling Technic,Immunolabeling Technique,Technic, Immunogold,Technic, Immunogold-Silver,Technic, Immunolabeling,Technics, Immunogold,Technics, Immunogold-Silver,Technics, Immunolabeling,Technique, Immunogold,Technique, Immunogold-Silver,Technique, Immunolabeling,Techniques, Immunogold,Techniques, Immunogold-Silver,Techniques, Immunolabeling
D008870 Microtubules Slender, cylindrical filaments found in the cytoskeleton of plant and animal cells. They are composed of the protein TUBULIN and are influenced by TUBULIN MODULATORS. Microtubule
D004330 Drosophila A genus of small, two-winged flies containing approximately 900 described species. These organisms are the most extensively studied of all genera from the standpoint of genetics and cytology. Fruit Fly, Drosophila,Drosophila Fruit Flies,Drosophila Fruit Fly,Drosophilas,Flies, Drosophila Fruit,Fly, Drosophila Fruit,Fruit Flies, Drosophila
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
D014404 Tubulin A microtubule subunit protein found in large quantities in mammalian brain. It has also been isolated from SPERM FLAGELLUM; CILIA; and other sources. Structurally, the protein is a dimer with a molecular weight of approximately 120,000 and a sedimentation coefficient of 5.8S. It binds to COLCHICINE; VINCRISTINE; and VINBLASTINE. alpha-Tubulin,beta-Tubulin,delta-Tubulin,epsilon-Tubulin,gamma-Tubulin,alpha Tubulin,beta Tubulin,delta Tubulin,epsilon Tubulin,gamma Tubulin
D016253 Microscopy, Immunoelectron Microscopy in which the samples are first stained immunocytochemically and then examined using an electron microscope. Immunoelectron microscopy is used extensively in diagnostic virology as part of very sensitive immunoassays. Immunoelectron Microscopy,Microscopy, Immuno-Electron,Immuno-Electron Microscopies,Immuno-Electron Microscopy,Immunoelectron Microscopies,Microscopies, Immuno-Electron,Microscopies, Immunoelectron,Microscopy, Immuno Electron
D018385 Centrosome An organelle near the nucleus of the cell consisting (in animals and organisms that have CILIA) of two CENTRIOLES, and the surrounding pericentriolar material. It functions as the primary MICROTUBULE-ORGANIZING CENTER during the eukaryotic CELL CYCLE (https://doi.org/10.1038/nrm2180). Pericentriolar Material,Pericentriolar Matrix,Pericentriolar Region,Centrosomes,Material, Pericentriolar,Matrix, Pericentriolar,Pericentriolar Materials,Pericentriolar Matrices,Pericentriolar Regions,Region, Pericentriolar

Related Publications

M Moritz, and M B Braunfeld, and J W Sedat, and B Alberts, and D A Agard
February 2000, Current opinion in cell biology,
M Moritz, and M B Braunfeld, and J W Sedat, and B Alberts, and D A Agard
December 1995, Nature,
M Moritz, and M B Braunfeld, and J W Sedat, and B Alberts, and D A Agard
February 2006, The Journal of cell biology,
M Moritz, and M B Braunfeld, and J W Sedat, and B Alberts, and D A Agard
October 2006, Journal of cell science,
M Moritz, and M B Braunfeld, and J W Sedat, and B Alberts, and D A Agard
April 2001, Current opinion in structural biology,
M Moritz, and M B Braunfeld, and J W Sedat, and B Alberts, and D A Agard
February 1997, Journal of cell science,
M Moritz, and M B Braunfeld, and J W Sedat, and B Alberts, and D A Agard
December 2010, The Journal of cell biology,
M Moritz, and M B Braunfeld, and J W Sedat, and B Alberts, and D A Agard
January 2001, Methods in cell biology,
M Moritz, and M B Braunfeld, and J W Sedat, and B Alberts, and D A Agard
January 2000, Current topics in developmental biology,
M Moritz, and M B Braunfeld, and J W Sedat, and B Alberts, and D A Agard
October 2011, Nature reviews. Molecular cell biology,
Copied contents to your clipboard!