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Journal Articles
An in vitro model for the analysis of intestinal brush border assembly. I. Ultrastructural analysis of cell contact-induced brush border assembly in Caco-2BBe cells
M.D. Peterson, M.S. Mooseker
Journal of Cell Science 1993 105: 445-460;
M.D. Peterson
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M.S. Mooseker
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Summary

Intestinal epithelial cells assemble and maintain a polarized, highly organized membrane-cytoskeleton array, the brush border. We describe an in vitro, cell contact-induced brush border assembly model using the Caco-2BBe clones. Subconfluent cells were ‘depolarized’ by brief passage through suspension culture in the presence of cytochalasin D and re-plated on filters at high density in low-Ca2+ medium. Upon return to regular medium, these small, rounded cells with bleb-like protrusions formed, over the course of 19 days, a polarized monolayer of tall, columnar cells with a well-defined brush border. Ultrastructural changes were documented by both transmission and scanning electron microscopy. The earliest events of microvillar assembly coincided with a short period of cell aggregation. Intercellular cysts were occasionally observed within these aggregates, and junction formation between cells which had no contact with the filter was also observed. Monolayer formation was completed within 48 hours, and cell height steadily increased approximately 3.5-fold over 19 days. Concurrent with monolayer formation and the increase in cell height, sparse microvilli with a few actin core filaments gradually became more dense and better organized. By the third day, the actin core bundles had begun to extend into the subjacent cytoplasm, while terminal web assembly was underway at five days. The mature morphology of the brush border was first observed at nine days, although cell height and microvillar density continued to increase during the subsequent ten days. Microvillar density rose approximately nine-fold throughout brush border assembly in the Caco-2BBe cells. With the exception of the formation of cellular aggregates at the onset of the time course, this sequence of morphological changes is comparable to that observed during brush border assembly in embryonic intestinal epithelial cells. The Caco-2BBe assembly model provides a useful system in which to investigate various molecular aspects of brush border assembly.

  • © 1993 by Company of Biologists

REFERENCES

    1. Anderson J. M.,
    2. van Itallie C. M.,
    3. Peterson M. D.,
    4. Stevenson B. R.,
    5. Carew E. A. and
    6. Mooseker M. S.
    (1989). ZO-1 mRNA and protein expression during tight junction assembly in Caco-2 cells. J. Cell Biol 109, 1047–1056
    OpenUrlAbstract/FREE Full Text
    1. Blais A.,
    2. Bissonnette P. and
    3. Berteloot A.
    (1987). Common characteristics for Na+ -dependent sugar transport in Caco-2 cells and human fetal colon. J. Membr. Biol 99, 113–125
    OpenUrlCrossRefPubMedWeb of Science
    1. Bretscher A.
    (1991). Microfilament structure and function in the cortical cytoskeleton. Annu. Rev. Cell Biol 7, 337–374
    OpenUrlCrossRefWeb of Science
    1. Carboni J. M.,
    2. Howe C. L.,
    3. West A. B.,
    4. Barwick K. W.,
    5. Mooseker M. S. and
    6. Morrow J. S.
    (1987). Characterization of intestinal brush border cytoskeletal proteins of normal and neoplastic human epithelial cells. A comparison with the avian brush border. Am. J. Pathol 129, 589–600
    OpenUrlPubMed
    1. Chambers C. and
    2. Grey R. D.
    (1979). Development of structural components of the brush border in absorptive cells of the chick intestine. Cell Tiss. Res 204, 387–405
    OpenUrlPubMedWeb of Science
    1. Colony P. C. and
    2. Neutra M. R.
    (1983). Epithelial differentiation in the fetal rat colon: I. Plasma membrane phosphatase activities. Dev. Biol 97, 349–363
    OpenUrlCrossRefPubMedWeb of Science
    1. Ezzell R. M.,
    2. Chafel M. M. and
    3. Matsudaira P. T.
    (1989). Differential localization of villin and fimbrin during development of the mouse visceral endoderm and intestinal epithelium. Development 106, 407–419
    OpenUrlAbstract
    1. Fath K. R.,
    2. Obenauf S. D. and
    3. Burgess D. R.
    (1990). Cytoskeletal protein and mRNA accumulation during brush border formation in adult chicken enterocytes. Development 109, 449–459
    OpenUrlAbstract
    1. Gonzalez-Mariscal L.,
    2. Chavez de Ramirez B. and
    3. Cereijido M.
    (1985). Tight junction formation in cultured epithelial cells (MDCK). J. Membr. Biol 86, 113–125
    OpenUrlCrossRefPubMedWeb of Science
    1. Heintzelman M. B. and
    2. Mooseker M. S.
    (1990). Assembly of the brush border cytoskeleton: changes in the distribution of microvillar core proteins during enterocyte differentiation in adult chicken intestine. Cell Motil. Cytoskel 15, 12–22
    OpenUrlCrossRefPubMedWeb of Science
    1. Heintzelman M. B. and
    2. Mooseker M. S.
    (1990). Structural and compositional analysis of early stages in microvillus assembly in the enterocyte of the chick embryo. Differentiation 43, 175–182
    OpenUrlCrossRefPubMedWeb of Science
    1. Heintzelman M. B. and
    2. Mooseker M. S.
    (1992). Assembly of the intestinal brush border cytoskeleton. Curr. Topics Dev. Biol 26, 93–122
    OpenUrlCrossRefPubMedWeb of Science
    1. Kelley R. O.
    (1973). An ultrastructural and cytochemical study of developing small intestine in man. J. Embryol. Exp. Morph 29, 411–430
    OpenUrlPubMed
    1. Mamajiwalla S. N.,
    2. Fath K. R. and
    3. Burgess D. R.
    (1992). Development of the chicken intestinal epithelium. Curr. Topics Dev. Biol 26, 123–143
    OpenUrlCrossRefPubMedWeb of Science
    1. Mathan M.,
    2. Moxey P. C. and
    3. Trier J. S.
    (1976). Morphogenesis of fetal rat duodenal villi. Am. J. Anat 146, 73–92
    OpenUrlCrossRefPubMedWeb of Science
    1. Mooseker M. S.
    (1985). Organization, chemistry, and assembly of the cytoskeletal apparatus of the intestinal brush border. Annu. Rev. Cell Biol 1, 209–241
    OpenUrlCrossRefWeb of Science
    1. Moxey P. C. and
    2. Trier J. S.
    (1978). Specialized cell types in the human fetal small intestine. Anat. Rec 191, 269–286
    OpenUrlCrossRefPubMed
    1. Moxey P. C. and
    2. Trier J. S.
    (1979). Development of villus absorptive cells in the human fetal small intestine: A morphological and morphometric study. Anat. Rec 195, 463–482
    OpenUrlCrossRefPubMed
    1. Nelson W. J. and
    2. Veshnock P. J.
    (1987). Modulation of fodrin (membrane skeleton) stability by cell-cell contact in Madin-Darby canine kidney epithelial cells. J. Cell Biol 104, 1527–1537
    OpenUrlAbstract/FREE Full Text
    1. Peterson M. D. and
    2. Mooseker M. S.
    (1992). Characterization of theenterocyte-like brush border cytoskeleton of the C2BBe clones of the human intestinal cell line, Caco-2. J. Cell Sci 102, 581–600
    OpenUrlAbstract/FREE Full Text
    1. Peterson M. D.,
    2. Bement W. M. and
    3. Mooseker M. S.
    (1993). An in vitro model for the analysis of intestinal brush border assembly: II; Changes in expression and localization of brush border proteins during cell contact-induced brush border assembly in Caco-2BBe cells. J. Cell Sci 105, 461–472
    OpenUrlAbstract/FREE Full Text
    1. Pinto M.,
    2. Robine-Leon S.,
    3. Appay M.-D.,
    4. Kedinger M.,
    5. Triadou N.,
    6. Dussaulx E.,
    7. Lacroix B.,
    8. Simon-Assmann P.,
    9. Haffen K.,
    10. Fogh J. and
    11. Zweibaum A.
    (1983). Enterocyte-like differentiation and polarization of the human colon carcinoma cell line Caco-2 in culture. Biol. Cell 47, 323–330
    OpenUrlWeb of Science
    1. Riley S. A.,
    2. Warhurst G.,
    3. Crowe P. T. and
    4. Turnberg L. A.
    (1991). Active hexose transport across cultured human Caco-2 cells: characterisation and influence of culture conditions. Biochim. Biophys. Acta 1066, 175–182
    OpenUrlPubMed
    1. Stidwell R. P.,
    2. Wysolmerski T. and
    3. Burgess D. R.
    (1984). The brush border cytoskeleton is not static: In vivo turnover of proteins. J. Cell Biol 98, 641–645
    OpenUrlAbstract/FREE Full Text
    1. Trier J. S.
    (1963). Studies of small intestinal crypt epithelium. I. The fine structure of the crypt epithelium of the proximal small intestine of fasting humans. J. Cell Biol 18, 599–620
    OpenUrlAbstract/FREE Full Text
    1. van Dongen J. M.,
    2. Visser W. J.,
    3. Daems W. Th. and
    4. Galjaard H.
    (1976). The relation between cell proliferation, differentiation and ultrastructural development in rat intestinal epithelium. Cell Tiss. Res 174, 183–199
    OpenUrlPubMed
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Journal Articles
An in vitro model for the analysis of intestinal brush border assembly. I. Ultrastructural analysis of cell contact-induced brush border assembly in Caco-2BBe cells
M.D. Peterson, M.S. Mooseker
Journal of Cell Science 1993 105: 445-460;
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Journal Articles
An in vitro model for the analysis of intestinal brush border assembly. I. Ultrastructural analysis of cell contact-induced brush border assembly in Caco-2BBe cells
M.D. Peterson, M.S. Mooseker
Journal of Cell Science 1993 105: 445-460;

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