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Published on: February 21, 2016
Tubulin and microtubules in cochlear hair cells: comparative immunocytochemistry and ultrastructure
P S Steyger1, D N Furness, C M Hackney
1Department of Communication and Neuroscience, University of Keele, Staffordshire, U.K.
Insights
Tubulin distribution in guinea pig cochlear hair cells was mapped using immunofluorescence. Distinct patterns reveal microtubule arrangements crucial for hair cell structure and function.
Area of Science:
- Cell Biology
- Neuroscience
- Otolaryngology
Background:
- Tubulin forms microtubules, essential cytoskeletal components.
- Understanding tubulin distribution aids in elucidating hair cell structure and function.
Purpose of the Study:
- To investigate the distribution of tubulin within the guinea pig organ of Corti.
- To correlate tubulin patterns with microtubule organization in hair cells.
Main Methods:
- Indirect immunofluorescence microscopy using monoclonal antibodies to tubulin.
- Surface preparations of the guinea pig organ of Corti.
- Correlation with transmission electron microscopy observations.
Main Results:
- Distinct tubulin labeling patterns observed in inner and outer hair cells.
- Labeling concentrated around the cell apex, cuticular plate, and strial side.
- Differences in labeling density between inner and outer hair cells noted.
- Microtubule arrangements correlate with specific cellular regions and structures.
Conclusions:
- The study reveals specific tubulin distributions in cochlear hair cells.
- These patterns suggest roles in cellular structure, organelle transport, and synaptic function.
- Further research can explore the functional implications of these microtubule arrangements.
Abstract:
The distribution of tubulin has been investigated in surface preparations of the guinea pig organ of Corti using indirect immunofluorescence microscopy. Two different monoclonal antibodies to tubulin produce similar distinct patterns of labelling in hair cells. Labelling is greater in inner hair cells than outer hair cells. It occurs in rings around the cell apex, and in a meshwork below and channels through, the cuticular plate. In outer hair cells from the apical region of the cochlea, labelling occurs around the location of a basalward protrusion of the cuticular plate. These patterns correlate with the location of microtubules observed using transmission electron microscopy. A large patch of labelling occurs on the strial side of the cell corresponding to the largest channel through the cuticular plate and the kinociliary basal body. Strands of labelling are seen running parallel to the long axis of the cell between the subcuticular and synaptic region. Many more of these strands are seen in the inner hair cell than the outer hair cell and may correspond to tracks of microtubules transporting neurotransmitter vesicles or other organelles. In outer hair cells, intense labelling and many microtubules are seen in the subnuclear region. The possible roles of the different microtubule arrangements are discussed.
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