Literature DB >> 8143989

Reciprocal expression of laminin A-chain isoforms along the crypt-villus axis in the human small intestine.

J F Beaulieu1, P H Vachon.   

Abstract

BACKGROUND/AIMS: Intestinal epithelial cell proliferation, migration, and differentiation are susceptible to various influences along the crypt-villus axis including compositional changes in the basement membrane and differential expression of receptors for these components. However, laminin has been consistently detected at the epithelial basement membrane without significant variation in relation to the crypt-villus functional unit. The aim of this study was to examine the distribution of individual laminin chains.
METHODS: The patterns of distribution of laminin A, M (an A-chain variant), B1, and B2 chains as well as the integrins alpha 6 beta 1 and alpha 6 beta 4, two laminin receptors, were determined by indirect immunofluorescence in the adult human small intestine.
RESULTS: Markedly distinct patterns of laminin chain expression were observed along the crypt-villus axis. The A chain was found predominantly associated with the differentiated epithelial cells on the villus whereas the M chain was restricted to the basement membrane of crypts. However, both B1 and B2 chains were detected all along the intestinal basement membrane. Furthermore, alpha 6 beta 1 and alpha 6 beta 4 integrins were found to be expressed by all enterocytes.
CONCLUSIONS: These observations show a reciprocal expression of laminin isoforms along the crypt-villus axis and support the concept that the intestinal epithelial basement membrane is subjected to intricate compositional changes.

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Year:  1994        PMID: 8143989     DOI: 10.1016/0016-5085(94)90740-4

Source DB:  PubMed          Journal:  Gastroenterology        ISSN: 0016-5085            Impact factor:   22.682


  25 in total

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Review 2.  Tissue architecture: the ultimate regulator of epithelial function?

Authors:  C Hagios; A Lochter; M J Bissell
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Review 3.  Cellular and molecular partners involved in gut morphogenesis and differentiation.

Authors:  M Kedinger; O Lefebvre; I Duluc; J N Freund; P Simon-Assmann
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  1998-06-29       Impact factor: 6.237

4.  Chemokine stimulation promotes enterocyte migration through laminin-specific integrins.

Authors:  Kimberle A Agle; Rebecca A Vongsa; Michael B Dwinell
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2011-09-15       Impact factor: 4.052

5.  Integrin α6β4 in colorectal cancer.

Authors:  Jean-François Beaulieu
Journal:  World J Gastrointest Pathophysiol       Date:  2010-04-15

6.  Intestinal epithelial restitution. Involvement of specific laminin isoforms and integrin laminin receptors in wound closure of a transformed model epithelium.

Authors:  M M Lotz; A Nusrat; J L Madara; R Ezzell; U M Wewer; A M Mercurio
Journal:  Am J Pathol       Date:  1997-02       Impact factor: 4.307

7.  Altered expression of laminins in Crohn's disease small intestinal mucosa.

Authors:  Y Bouatrouss; F E Herring-Gillam; J Gosselin; J Poisson; J F Beaulieu
Journal:  Am J Pathol       Date:  2000-01       Impact factor: 4.307

Review 8.  Extracellular matrix components in intestinal development.

Authors:  P Simon-Assmann; M Kedinger; A De Arcangelis; V Rousseau; P Simo
Journal:  Experientia       Date:  1995-09-29

9.  Merosin-deficient congenital muscular dystrophy. Partial genetic correction in two mouse models.

Authors:  W Kuang; H Xu; P H Vachon; L Liu; F Loechel; U M Wewer; E Engvall
Journal:  J Clin Invest       Date:  1998-08-15       Impact factor: 14.808

10.  Integrin-linked kinase regulates migration and proliferation of human intestinal cells under a fibronectin-dependent mechanism.

Authors:  David Gagné; Jean-François Groulx; Yannick D Benoit; Nuria Basora; Elizabeth Herring; Pierre H Vachon; Jean-François Beaulieu
Journal:  J Cell Physiol       Date:  2010-02       Impact factor: 6.384

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