Literature DB >> 11784011

Involvement of laminin binding integrins and laminin-5 in branching morphogenesis of the ureteric bud during kidney development.

R Zent1, K T Bush, M L Pohl, V Quaranta, N Koshikawa, Z Wang, J A Kreidberg, H Sakurai, R O Stuart, S K Nigám.   

Abstract

Branching morphogenesis of the ureteric bud (UB) [induced by the metanephric mesenchyme (MM)] is necessary for normal kidney development. The role of integrins in this complex developmental process is not well understood. However, the recent advent of in vitro model systems to study branching of UB cells and isolated UB tissue makes possible a more detailed analysis of the integrins involved. We detected integrin subunits alpha3, alpha6, beta1, and beta4 in both the UB and cells derived from the early UB. Blocking the function of each of these integrin subunits individually markedly inhibited branching morphogenesis in cell culture models. However, inhibiting individual integrin function with blocking antibodies in whole kidney and isolated UB culture only partially inhibited UB branching morphogenesis, suggesting that, in these more complex in vitro systems, multiple integrins are involved in the branching program. In whole organ and isolated bud culture, marked retardation of UB branching was observed only when both alpha3 and alpha6 integrin subunits were inhibited. The alpha6 integrin subunit can be expressed as both alpha6beta1 and alpha6beta4, and both of these beta subunits are important for UB branching morphogenesis in both cell and organ culture. Furthermore, laminin-5, a common ligand for integrins alpha3beta1 and alpha6beta4, was detected in the developing UB and shown to be required for normal UB branching morphogenesis in whole embryonic kidney organ culture as well as isolated UB culture. Together, these data from UB cell culture, organ culture, and isolated UB culture models indicate that both integrin alpha3 and alpha6 subunits play a direct role in UB branching morphogenesis, as opposed to being modulators of the inductive effects of mesenchyme on UB development. Furthermore the data are consistent with a role for laminin-5, acting through its alpha3beta1 and/or alpha6beta4 integrin receptors, in UB branching during nephrogenesis. These data may help to partially explain the renal phenotype seen in integrin alpha3 and alpha3/alpha6 subunit-deficient animals. Copyright 2001 Academic Press.

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Year:  2001        PMID: 11784011     DOI: 10.1006/dbio.2001.0391

Source DB:  PubMed          Journal:  Dev Biol        ISSN: 0012-1606            Impact factor:   3.582


  26 in total

1.  Pak1 regulates branching morphogenesis in 3D MDCK cell culture by a PIX and beta1-integrin-dependent mechanism.

Authors:  Michael P Hunter; Mirjam M Zegers
Journal:  Am J Physiol Cell Physiol       Date:  2010-03-24       Impact factor: 4.249

Review 2.  Galectins in kidney development.

Authors:  R Colin Hughes
Journal:  Glycoconj J       Date:  2002       Impact factor: 2.916

Review 3.  Role of extracellular matrix in kidney development and repair.

Authors:  Brigitte Lelongt; Pierre Ronco
Journal:  Pediatr Nephrol       Date:  2003-06-17       Impact factor: 3.714

Review 4.  Extracellular matrix and cytoskeletal dynamics during branching morphogenesis.

Authors:  Hye Young Kim; Celeste M Nelson
Journal:  Organogenesis       Date:  2012-04-01       Impact factor: 2.500

5.  MT1-MMP-mediated basement membrane remodeling modulates renal development.

Authors:  Karen S Riggins; Glenda Mernaugh; Yan Su; Vito Quaranta; Naohiko Koshikawa; Motoharu Seiki; Ambra Pozzi; Roy Zent
Journal:  Exp Cell Res       Date:  2010-08-19       Impact factor: 3.905

Review 6.  Concise review: can the intrinsic power of branching morphogenesis be used for engineering epithelial tissues and organs?

Authors:  Sanjay K Nigam
Journal:  Stem Cells Transl Med       Date:  2013-11-04       Impact factor: 6.940

7.  Integrin alpha6 maintains the structural integrity of the kidney collecting system.

Authors:  Olga M Viquez; Eugenia M Yazlovitskaya; Tianxiang Tu; Glenda Mernaugh; Pablo Secades; Karen K McKee; Elizabeth Georges-Labouesse; Adele De Arcangelis; Vito Quaranta; Peter Yurchenco; Leslie C Gewin; Arnoud Sonnenberg; Ambra Pozzi; Roy Zent
Journal:  Matrix Biol       Date:  2016-12-30       Impact factor: 11.583

8.  Identification of matrix physicochemical properties required for renal epithelial cell tubulogenesis by using synthetic hydrogels.

Authors:  Ricardo Cruz-Acuña; Adriana Mulero-Russe; Amy Y Clark; Roy Zent; Andrés J García
Journal:  J Cell Sci       Date:  2019-10-21       Impact factor: 5.285

9.  Constructing kidney-like tissues from cells based on programs for organ development: toward a method of in vitro tissue engineering of the kidney.

Authors:  Eran Rosines; Kohei Johkura; Xing Zhang; Heidi J Schmidt; Marvalyn Decambre; Kevin T Bush; Sanjay K Nigam
Journal:  Tissue Eng Part A       Date:  2010-08       Impact factor: 3.845

Review 10.  Integrins in renal development.

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

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