Literature DB >> 11307167

Loss of alpha3beta1 integrin function results in an altered differentiation program in the mouse submandibular gland.

A S Menko1, J A Kreidberg, T T Ryan, E Van Bockstaele, M A Kukuruzinska.   

Abstract

Mammalian submandibular gland (SMG) development leads to the establishment of highly organized secretory acinar and nonsecretory ductal epithelial cells. The ability of maturing salivary epithelial cells to attain their differentiated state has been shown to depend, in part, on interactions between extracellular matrix (ECM) proteins and their integrin receptors. In a search for key regulators of salivary cell lineage, we have studied alpha3beta1 integrin, a receptor for the basement membrane protein laminin, by characterizing embryonic day 18 (E18) SMGs isolated from mice carrying a targeted mutation in the alpha3 integrin gene. Transmission electron microscopy studies showed that the mutant SMGs exhibited an aberrant differentiation phenotype with defects in the apical-basal polarity axis and in the basement membrane. Based on immunohistochemistry and Western blot analyses, the alpha3beta1-deficient SMGs had altered expression and/or localization of several ECM and adhesive molecules, including laminin beta1, fibronectin, alpha5 integrin, and E-cadherin. These changes correlated with alterations in the activation state of Ras-extracellular signal-regulated kinase (ERK), as well as the expression and/or localization of Cdc42 and RhoA, two Rho GTPases that regulate the organization of the actin cytoskeleton. We conclude that alpha3beta1 is required for normal salivary cell differentiation and that its absence affects multiple components of adhesive complexes and their associated signalling pathways. Copyright 2001 Wiley-Liss, Inc.

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Year:  2001        PMID: 11307167     DOI: 10.1002/dvdy.1114

Source DB:  PubMed          Journal:  Dev Dyn        ISSN: 1058-8388            Impact factor:   3.780


  25 in total

1.  Epithelial β1 integrin is required for lung branching morphogenesis and alveolarization.

Authors:  Erin J Plosa; Lisa R Young; Peter M Gulleman; Vasiliy V Polosukhin; Rinat Zaynagetdinov; John T Benjamin; Amanda M Im; Riet van der Meer; Linda A Gleaves; Nada Bulus; Wei Han; Lawrence S Prince; Timothy S Blackwell; Roy Zent
Journal:  Development       Date:  2014-11-13       Impact factor: 6.868

Review 2.  Salivary gland development: a template for regeneration.

Authors:  Vaishali N Patel; Matthew P Hoffman
Journal:  Semin Cell Dev Biol       Date:  2013-12-11       Impact factor: 7.727

Review 3.  Physiological and pathological roles of alpha3beta1 integrin.

Authors:  Tsutomu Tsuji
Journal:  J Membr Biol       Date:  2004-08-01       Impact factor: 1.843

4.  Integrin expression in developing human salivary glands.

Authors:  Silvia Vanessa Lourenço; Supriya Kapas
Journal:  Histochem Cell Biol       Date:  2005-11-03       Impact factor: 4.304

5.  Coordinate integrin and c-Met signaling regulate Wnt gene expression during epithelial morphogenesis.

Authors:  Yingjie Liu; Nibedita Chattopadhyay; Shan Qin; Charles Szekeres; Tetyana Vasylyeva; Zhen X Mahoney; Mary Taglienti; Carlton M Bates; Harold A Chapman; Jeffrey H Miner; Jordan A Kreidberg
Journal:  Development       Date:  2009-01-28       Impact factor: 6.868

6.  α6 integrin transactivates insulin-like growth factor receptor-1 (IGF-1R) to regulate caspase-3-mediated lens epithelial cell differentiation initiation.

Authors:  Subhasree Basu; Suren Rajakaruna; Adèle De Arcangelis; Liping Zhang; Elisabeth Georges-Labouesse; A Sue Menko
Journal:  J Biol Chem       Date:  2013-12-31       Impact factor: 5.157

7.  Distribution of small Rho GTPases in the developing rat submandibular gland.

Authors:  Virgínia O Crema; Anna Christina M Fossati; Dânia E Hamassaki; Marinilce F Santos
Journal:  J Mol Histol       Date:  2008-09-11       Impact factor: 2.611

8.  β1 Integrin regulates adult lung alveolar epithelial cell inflammation.

Authors:  Erin J Plosa; John T Benjamin; Jennifer M Sucre; Peter M Gulleman; Linda A Gleaves; Wei Han; Seunghyi Kook; Vasiliy V Polosukhin; Scott M Haake; Susan H Guttentag; Lisa R Young; Ambra Pozzi; Timothy S Blackwell; Roy Zent
Journal:  JCI Insight       Date:  2020-01-30

Review 9.  Integrins in renal development.

Authors:  Sijo Mathew; Xiwu Chen; Ambra Pozzi; Roy Zent
Journal:  Pediatr Nephrol       Date:  2011-05-21       Impact factor: 3.714

Review 10.  Integrins in lens development and disease.

Authors:  Janice Walker; A Sue Menko
Journal:  Exp Eye Res       Date:  2008-07-11       Impact factor: 3.467

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