Literature DB >> 15363809

Assembly and tissue functions of early embryonic laminins and netrins.

Peter D Yurchenco1, William G Wadsworth.   

Abstract

Vertebrate laminins and netrins share N-terminal domain structure, but appear to be only distantly related. Both families can be divided into different subfamilies on the basis of structural considerations. Recent observations suggest that specific laminin and netrin members have developmental functions that are highly conserved across species. Vertebrate laminin-1 (alpha1beta1gamma1) and laminin-10 (alpha5beta1gamma1), like the two Caenorhabditis elegans laminins, are embryonically expressed and are essential for basement membrane assembly. Basement membrane assembly is a cooperative process in which laminins polymerize through their LN domains and anchor to the cell surface through their G domains; this leads to cell signaling through integrins and dystroglycan (and possibly other receptors) recruited to the adherent laminin. Netrins may associate with this network through heterotypic LN domain interactions. Vertebrate netrin-1, like invertebrate UNC-6/netrins, is well known as an extracellular guidance cue that directs axon migration towards or away from the ventral midline. It also regulates cell adhesions and migrations, probably as a basement membrane component. Although sharing structural features, these two vertebrate protein families are quite distinct, having both retained members that mediate the ancestral developmental functions. Copyright 2004 Elsevier Ltd.

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Year:  2004        PMID: 15363809     DOI: 10.1016/j.ceb.2004.07.013

Source DB:  PubMed          Journal:  Curr Opin Cell Biol        ISSN: 0955-0674            Impact factor:   8.382


  44 in total

1.  Primate embryonic stem cells create their own niche while differentiating in three-dimensional culture systems.

Authors:  M Michelini; V Franceschini; S Sihui Chen; S Papini; A Rosellini; F Ciani; L Margolis; R P Revoltella
Journal:  Cell Prolif       Date:  2006-06       Impact factor: 6.831

Review 2.  Ectoplasmic specialization: a friend or a foe of spermatogenesis?

Authors:  Helen H N Yan; Dolores D Mruk; Will M Lee; C Yan Cheng
Journal:  Bioessays       Date:  2007-01       Impact factor: 4.345

3.  Spatial and temporal control of laminin-332 (5) and -511 (10) expression during induction of anagen hair growth.

Authors:  Koji Sugawara; Daisuke Tsuruta; Hiromi Kobayashi; Kazuo Ikeda; Susan B Hopkinson; Jonathan C R Jones; Masamitsu Ishii
Journal:  J Histochem Cytochem       Date:  2006-09-06       Impact factor: 2.479

Review 4.  Bridging structure with function: structural, regulatory, and developmental role of laminins.

Authors:  Julia Tzu; M Peter Marinkovich
Journal:  Int J Biochem Cell Biol       Date:  2007-08-06       Impact factor: 5.085

5.  Discovery of a functional protein complex of netrin-4, laminin gamma1 chain, and integrin alpha6beta1 in mouse neural stem cells.

Authors:  Fernanda I Staquicini; Emmanuel Dias-Neto; Jianxue Li; Evan Y Snyder; Richard L Sidman; Renata Pasqualini; Wadih Arap
Journal:  Proc Natl Acad Sci U S A       Date:  2009-02-04       Impact factor: 11.205

6.  Laminin terminates the Netrin/DCC mediated attraction of vagal sensory axons.

Authors:  Elyanne M Ratcliffe; Fabien D'Autréaux; Michael D Gershon
Journal:  Dev Neurobiol       Date:  2008-06       Impact factor: 3.964

7.  Laminin deposition in the extracellular matrix: a complex picture emerges.

Authors:  Kevin J Hamill; Kristina Kligys; Susan B Hopkinson; Jonathan C R Jones
Journal:  J Cell Sci       Date:  2009-12-15       Impact factor: 5.285

8.  Laminin deficits induce alterations in the development of dopaminergic neurons in the mouse retina.

Authors:  Viktória Dénes; Paul Witkovsky; Manuel Koch; Dale D Hunter; Germán Pinzón-Duarte; William J Brunken
Journal:  Vis Neurosci       Date:  2007-08-22       Impact factor: 3.241

9.  Biochemical and biophysical changes underlie the mechanisms of basement membrane disruptions in a mouse model of dystroglycanopathy.

Authors:  Peng Zhang; Yuan Yang; Joseph Candiello; Trista L Thorn; Noel Gray; Willi M Halfter; Huaiyu Hu
Journal:  Matrix Biol       Date:  2013-02-27       Impact factor: 11.583

10.  Defective formation of the inner limiting membrane in laminin beta2- and gamma3-null mice produces retinal dysplasia.

Authors:  Germán Pinzón-Duarte; Gerard Daly; Yong N Li; Manuel Koch; William J Brunken
Journal:  Invest Ophthalmol Vis Sci       Date:  2009-11-11       Impact factor: 4.799

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