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Updated: May 5, 2026

In Vitro and In Vivo Approaches to Determine Intestinal Epithelial Cell Permeability
Published on: October 19, 2018
Limited tissue distribution of the intestinal brush border myosin I protein
D D Bikle1, S Munson, M L Mancianti
1Endocrine Research Section, Veterans Administration Medical Center, San Francisco, California.
Insights
Brush border myosin I, a protein in the intestinal brush border, is primarily found only in the intestine. This finding helps understand its role in microvillar motility and calcium transport.
Area of Science:
- Cell Biology
- Biochemistry
- Molecular Biology
Background:
- Brush border myosin I is a calmodulin-binding protein found in the intestinal brush border.
- It has been implicated in microvillar motility and vitamin D-regulated calcium transport.
- Its tissue distribution was previously unknown, hindering functional understanding.
Purpose of the Study:
- To determine the tissue distribution of brush border myosin I.
- To investigate whether its distribution aligns with a general motility function or a specialized transport role.
Main Methods:
- Purification of brush border myosin I to homogeneity.
- Generation of antisera against brush border myosin I.
- Immunocytochemistry, Western blotting, and immunofluorescence to localize the protein in various tissues.
Main Results:
- Brush border myosin I was localized to the intestinal brush border.
- Screening of brain, lung, heart, liver, spleen, pancreas, kidney, and skeletal muscle revealed no detectable brush border myosin I.
- Calmodulin-binding proteins were detected in other tissues, but not brush border myosin I.
Conclusions:
- The tissue distribution of brush border myosin I is highly restricted to the intestinal brush border.
- This restricted localization supports a specialized function, potentially in calcium transport, rather than general microvillar motility.
Abstract:
A myosinlike 105-110-kilodalton calmodulin-binding protein, brush border myosin I, found in the intestinal brush border has been linked to two seemingly disparate but possibly interacting functions of the brush border, namely, microvillar motility and vitamin D regulated calcium transport. If brush border myosin I were to function primarily as a myosinlike molecule powering cellular or microvillar motility, one might expect it to be found in a variety of tissues with microvilli such as the renal brush border and bile canaliculus. On the other hand, a more specialized function such as participation in vitamin D regulated calcium transport might dictate a more restricted tissue distribution for brush border myosin I. To determine the tissue distribution of brush border myosin I, we purified this protein to apparent homogeneity, generated antisera to it, and used the antisera to localize the protein within the intestinal epithelial cell by immunocytochemistry. We then screened a variety of other tissues (brain, lung, heart, liver, spleen, pancreas, kidney, and skeletal muscle) both for calmodulin-binding proteins as well as for brush border myosin I using Western blots and immunofluorescence. Our results indicate that the intestinal brush border myosin I is limited in its distribution to the intestinal brush border.
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