Literature DB >> 7615656

Formation of two microtubule-nucleating sites which perform differently during centrosomal reorganization in a mouse cochlear epithelial cell.

J B Tucker1, M M Mogensen, C C Paton, J B Mackie, C G Henderson, L M Leckie.   

Abstract

This report provides evidence for the formation of a cell surface-associated centrosome with two spatially discrete microtubule-nucleating sites that perform differently; the minus ends of microtubules remain anchored to one site but escape from the other. Centrosomal reorganization in the cells in question, outer pillar cells of the organ of Corti, indicates that its pericentriolar material becomes intimately associated with the plasma membrane at the two nucleating sites. Two large microtubules bundles assemble in each cell. A beam which includes about 1,300 microtubules spans most of the cell apex. It is positioned at right angles to a pillar with about 4,500 microtubules which is oriented parallel to the cell's longitudinal axis. The beam's microtubules elongate from, and remain attached to, a centrosomal region with two centrioles which acts as a microtubule-nucleating site. However, the elongating microtubules do not radiate from the immediate vicinity of the centrioles. During beam assembly, the minus ends of the microtubules are concentrated together close to the plasma membrane (less than 0.2 micron away in many cases) at a site which is located to one side of the cell apex. High concentrations of the pillar's microtubules elongating from one particular site have not been detected. Analyses of pillar assembly indicate that the following sequence of events occurs. Pillar microtubules elongate from an apical cell surface-associated nucleating site, which becomes more distantly separated from the centriolar locality as cell morphogenesis progresses. Microtubules do not accumulate at this apical nucleating site because they escape from it. They migrate down to lower levels in the cell where the mature bundle is finally situated and their plus ends are captured at the cell base.

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Year:  1995        PMID: 7615656     DOI: 10.1242/jcs.108.4.1333

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  6 in total

1.  Nucleation and capture of large cell surface-associated microtubule arrays that are not located near centrosomes in certain cochlear epithelial cells.

Authors:  J B Tucker; M M Mogensen; C G Henderson; S J Doxsey; M Wright; T Stearns
Journal:  J Anat       Date:  1998-01       Impact factor: 2.610

2.  The Reduction in Microtubule Arrays Caused by the Dysplasia of the Non-Centrosomal Microtubule-Organizing Center Leads to a Malformed Organ of Corti in the Cx26-Null Mouse.

Authors:  Yue Qiu; Kai Xu; Le Xie; Sen Chen; Yu Sun
Journal:  Biomedicines       Date:  2022-06-09

3.  Cochlear supporting cells require GAS2 for cytoskeletal architecture and hearing.

Authors:  Tingfang Chen; Alex M Rohacek; Matthew Caporizzo; Amir Nankali; Jeroen J Smits; Jaap Oostrik; Cornelis P Lanting; Erdi Kücük; Christian Gilissen; Jiddeke M van de Kamp; Ronald J E Pennings; Staci M Rakowiecki; Klaus H Kaestner; Kevin K Ohlemiller; John S Oghalai; Hannie Kremer; Benjamin L Prosser; Douglas J Epstein
Journal:  Dev Cell       Date:  2021-05-07       Impact factor: 12.270

4.  Developmental abnormalities in supporting cell phalangeal processes and cytoskeleton in the Gjb2 knockdown mouse model.

Authors:  Sen Chen; Le Xie; Kai Xu; Hai-Yan Cao; Xia Wu; Xiao-Xiang Xu; Yu Sun; Wei-Jia Kong
Journal:  Dis Model Mech       Date:  2018-02-26       Impact factor: 5.758

5.  Spatio-temporal distribution of tubulin-binding cofactors and posttranslational modifications of tubulin in the cochlea of mice.

Authors:  Lukas Juergens; Linda Bieniussa; Johannes Voelker; Rudolf Hagen; Kristen Rak
Journal:  Histochem Cell Biol       Date:  2020-07-25       Impact factor: 4.304

6.  The adenomatous polyposis coli protein unambiguously localizes to microtubule plus ends and is involved in establishing parallel arrays of microtubule bundles in highly polarized epithelial cells.

Authors:  Mette M Mogensen; John B Tucker; John B Mackie; Alan R Prescott; Inke S Näthke
Journal:  J Cell Biol       Date:  2002-06-10       Impact factor: 10.539

  6 in total

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