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Published on: February 21, 2016
Ultrastructural localization of calmodulin in gerbil cochlea by immunogold electron microscopy
1Department of Pathology, Shinshu University School of Medicine, 3-1-1 Asahi, 390-8621, Matsumoto, Japan. nakazawa@sch.md.shinshu-u.ac.jp
Insights
Calmodulin, a vital calcium-binding protein, was found in various cochlear cells, including hair cells and Boettcher cells, in gerbils. This distribution suggests calmodulin
Area of Science:
- Oto-neuroscience
- Cell Biology
- Biochemistry
Background:
- Calmodulin is a crucial calcium-binding protein involved in cellular signaling.
- Understanding calmodulin's localization in the cochlea is key to deciphering auditory function.
Purpose of the Study:
- To identify and localize calmodulin within the adult gerbil cochlea.
- To correlate calmodulin distribution with the functional roles of different cochlear cell types.
Main Methods:
- Immunohistochemistry on paraffin-embedded cochlear sections.
- Immunogold electron microscopy using a monoclonal antibody against bovine calmodulin.
Main Results:
- Calmodulin was abundant in inner hair cells (IHCs), outer hair cells (OHCs), and Boettcher cells.
- Localization observed in stereocilia, cuticular plate, and cytoplasm of hair cells.
- Significant calmodulin presence in stria vascularis, spiral ligament, spiral ganglion neurons, and vascular smooth muscle.
Conclusions:
- Calmodulin distribution in IHCs and OHCs supports their roles as mechanotransducers.
- High calmodulin levels in Boettcher cells suggest involvement in calcium regulation and ion transport.
Abstract:
Localization of calmodulin, a calcium binding protein, was identified in adult gerbil cochleas using paraffin section immunohistochemistry and immunogold electron microscopy with monoclonal antibody against bovine calmodulin. Immunoreactive calmodulin was abundant in inner hair cells (IHCs), outer hair cells (OHCs) and Boettcher cells of the cochleas. Other cell types containing calmodulin were marginal cells and basal cells of the stria vascularis, fibrocytes in the spiral ligament, spiral ganglion neurons and vascular smooth muscle cells. Immunogold labeling for calmodulin was observed in cuticular plate, stereocilia, and within cytoplasm of IHCs and OHCs. In OHCs the labeling was mostly observed in the region underlying lateral wall corresponding to subsurface cisterna. In IHCs the staining was diffuse in the cytoplasm and denser than that in OHCs. Boettcher cells showed dense staining along the microvillous projections facing to the intercellular spaces between Boettcher cells and Claudius cells and between the neighboring Boettcher cells. These distributions of calmodulin in the hair cells consist with the assumption that IHCs act as a true neurotransducer and OHCs as an active bi-directional mechanotransducer. The rich presence of calmodulin in Boettcher cells suggests that the cells may involve in mediating Ca(2+) regulation and play a distinctive active role in ion transport.

