Literature DB >> 11884521

Dual labeling of the fibronectin matrix and actin cytoskeleton with green fluorescent protein variants.

Tomoo Ohashi1, Daniel P Kiehart, Harold P Erickson.   

Abstract

We have prepared 3T3 cells doubly labeled to visualize simultaneously the extracellular fibronectin (FN) matrix and intracellular actin cytoskeleton in living cell cultures. We used FN-yellow fluorescent protein (FN-yfp) for the FN matrix, and the actin-binding domain of moesin fused to cyan fluorescent protein (cfp-Moe) to stain actin. Actin filament bundles were clearly seen in the protruding lamellae of the cells. FN matrix assembly appeared to be initiated as small spots of FN at the ends of actin filament bundles. The spots then elongated along the actin filament bundle toward the cell center to form FN fibrils. The end of the fibril towards the cell edge appeared immobile, and probably attached to the substrate, whereas the end toward the cell center frequently showed movements, suggesting attachment to the cell. Combining our data with the observations of Pankov et al. we suggest that fibrils grow by stretching this mobile end toward the cell center while adding new FN molecules at the end and along the entire length. When the cell culture was treated with cytochalasin to disrupt the actin cytoskeleton, some fibrils contracted substantially, suggesting that the segment attached primarily to the cell surface is stretched.

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Year:  2002        PMID: 11884521     DOI: 10.1242/jcs.115.6.1221

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  42 in total

1.  Fibronectin matrix assembly regulates alpha5beta1-mediated cell cohesion.

Authors:  Elizabeth E Robinson; Ramsey A Foty; Siobhan A Corbett
Journal:  Mol Biol Cell       Date:  2004-01-12       Impact factor: 4.138

2.  Fibronectin organization under and near cells.

Authors:  Kathy L De Jong; Heather C MacLeod; Peter R Norton; Nils O Petersen
Journal:  Eur Biophys J       Date:  2006-08-31       Impact factor: 1.733

3.  The N-terminal 70-kDa fragment of fibronectin binds to cell surface fibronectin assembly sites in the absence of intact fibronectin.

Authors:  Bianca R Tomasini-Johansson; Douglas S Annis; Deane F Mosher
Journal:  Matrix Biol       Date:  2006-03-06       Impact factor: 11.583

Review 4.  A comparison of the mechanical and structural properties of fibrin fibers with other protein fibers.

Authors:  M Guthold; W Liu; E A Sparks; L M Jawerth; L Peng; M Falvo; R Superfine; R R Hantgan; S T Lord
Journal:  Cell Biochem Biophys       Date:  2007-10-02       Impact factor: 2.194

5.  Cell traction forces direct fibronectin matrix assembly.

Authors:  Christopher A Lemmon; Christopher S Chen; Lewis H Romer
Journal:  Biophys J       Date:  2009-01       Impact factor: 4.033

6.  Stretch-dependent changes in molecular conformation in fibronectin nanofibers.

Authors:  John M Szymanski; Emily N Sevcik; Kairui Zhang; Adam W Feinberg
Journal:  Biomater Sci       Date:  2017-07-25       Impact factor: 6.843

7.  Who moves whom during primitive streak formation in the chick embryo.

Authors:  Manli Chuai; Cornelis J Weijer
Journal:  HFSP J       Date:  2009-03-31

8.  Endothelial matrix assembly during capillary morphogenesis: insights from chimeric TagRFP-fibronectin matrix.

Authors:  Fumin Chang; Christopher A Lemmon; Voraphoj Nilaratanakul; Varda Rotter; Lewis Romer
Journal:  J Histochem Cytochem       Date:  2014-07-25       Impact factor: 2.479

9.  Revisiting the mystery of fibronectin multimers: the fibronectin matrix is composed of fibronectin dimers cross-linked by non-covalent bonds.

Authors:  Tomoo Ohashi; Harold P Erickson
Journal:  Matrix Biol       Date:  2009-03-12       Impact factor: 11.583

10.  Dynamic 3D cell rearrangements guided by a fibronectin matrix underlie somitogenesis.

Authors:  Gabriel G Martins; Pedro Rifes; Rita Amândio; Gabriela Rodrigues; Isabel Palmeirim; Sólveig Thorsteinsdóttir
Journal:  PLoS One       Date:  2009-10-15       Impact factor: 3.240

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