Literature DB >> 379021

Intermediate-sized filaments of human endothelial cells.

W W Franke, E Schmid, M Osborn, K Weber.   

Abstract

Human endothelial cells prepared from unbilical cords are characterized in parallel by electron microscopy and indirect immunofluorescence microscopy using specific antibodies against different classes of intermediate-sized filaments. The strongly developed, loose bundles of intermediate-sized filaments typically found in these cells are not decorated by antibodies against prekeratin or antibodies against smooth muscle desmin. They are, however, strongly decorated by antibodies directed against murine "vimentin," i.e., the 57,000 mol wt polypeptide which is the major protein of the intermediate-sized filaments predominant in various cells of mesenchymal origin. Cytoskeletal preparations greatly enriched in intermediate-sized filaments show the enrichment of a polypeptide band comigrating with murine vimentin. This shows that the intermediate-sized filaments that are abundant in human endothelial cells are predominantly of the vimentin type and can be demonstrated by their cross-reaction with the vimentin of rodents. These data also strengthen the evidence for several subclasses of intermediate-sized filaments, which can be distinguished by immunological procedures.

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Year:  1979        PMID: 379021      PMCID: PMC2110384          DOI: 10.1083/jcb.81.3.570

Source DB:  PubMed          Journal:  J Cell Biol        ISSN: 0021-9525            Impact factor:   10.539


  11 in total

1.  Fine structure of vascular endothelium in culture.

Authors:  C C Haudenschild; R S Cotran; M A Gimbrone; J Folkman
Journal:  J Ultrastruct Res       Date:  1975-01

2.  Bacteriophage T4 prehead proteinase. II. Its cleavage from the product of gene 21 and regulation in phage-infected cells.

Authors:  M K Showe; E Isobe; L Onorato
Journal:  J Mol Biol       Date:  1976-10-15       Impact factor: 5.469

3.  Self-assembly of bovine epidermal keratin filaments in vitro.

Authors:  P M Steinert; W W Idler; S B Zimmerman
Journal:  J Mol Biol       Date:  1976-12-15       Impact factor: 5.469

4.  Immunofluorescent staining of keratin fibers in cultured cells.

Authors:  T T Sun; H Green
Journal:  Cell       Date:  1978-07       Impact factor: 41.582

5.  10 nm filaments in normal and transformed cells.

Authors:  R O Hynes; A T Destree
Journal:  Cell       Date:  1978-01       Impact factor: 41.582

6.  Classes of distinguishable 10 nm cytoplasmic filaments.

Authors:  P F Davison; B S Hong; P Cooke
Journal:  Exp Cell Res       Date:  1977-10-15       Impact factor: 3.905

7.  Localization of bovine brain filament antibody on intermediate (100 A) filaments in guinea pig vascular endothelial cells and chick cardiac muscle cells.

Authors:  S H Blose; M L Shelanski; S Chacko
Journal:  Proc Natl Acad Sci U S A       Date:  1977-02       Impact factor: 11.205

8.  Direct visualization of the 10-nm (100-A)-filament network in whole and enucleated cultured cells.

Authors:  J V Small; J E Celis
Journal:  J Cell Sci       Date:  1978-06       Impact factor: 5.285

9.  A filamentous cytoskeleton in vertebrate smooth muscle fibers.

Authors:  P Cooke
Journal:  J Cell Biol       Date:  1976-03       Impact factor: 10.539

10.  Biochemical and immunological analysis of rapidly purified 10-nm filaments from baby hamster kidney (BHK-21) cells.

Authors:  J M Starger; W E Brown; A E Goldman; R D Goldman
Journal:  J Cell Biol       Date:  1978-07       Impact factor: 10.539

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  59 in total

1.  Vimentin immunoreactivity in normal and pathological human brain tissue.

Authors:  T Yamada; T Kawamata; D G Walker; P L McGeer
Journal:  Acta Neuropathol       Date:  1992       Impact factor: 17.088

2.  Evidence of vascular differentiation in anaplastic tumours of the thyroid--an immunohistological study.

Authors:  F Eckert; U Schmid; F Gloor; C Hedinger
Journal:  Virchows Arch A Pathol Anat Histopathol       Date:  1986

3.  Keratin gene expression in non-epithelial tissues. Detection with polymerase chain reaction.

Authors:  S T Traweek; J Liu; H Battifora
Journal:  Am J Pathol       Date:  1993-04       Impact factor: 4.307

4.  An immunocytochemical comparison of glial fibrillary acidic protein, S-100p and vimentin in human glial tumors.

Authors:  L Nakopoulou; E Kerezoudi; T Thomaides; B Litsios
Journal:  J Neurooncol       Date:  1990-02       Impact factor: 4.130

Review 5.  Defining the Cardiac Fibroblast.

Authors:  Malina J Ivey; Michelle D Tallquist
Journal:  Circ J       Date:  2016-10-14       Impact factor: 2.993

6.  The effects of combined cyclic stretch and pressure on the aortic valve interstitial cell phenotype.

Authors:  Patrick Thayer; Kartik Balachandran; Swetha Rathan; Choon Hwai Yap; Sivakkumar Arjunon; Hanjoong Jo; Ajit P Yoganathan
Journal:  Ann Biomed Eng       Date:  2011-02-23       Impact factor: 3.934

7.  Cell shape and cytoskeletal organization of the endothelial cells of the semilunar heart valves in the developing chick.

Authors:  V Garcia-Martinez; J M Hurle
Journal:  Anat Embryol (Berl)       Date:  1986

8.  Generation of fibroblast-like cells from cloned epithelial mammary cells in vitro: a possible new cell type.

Authors:  R Dulbecco; M Henahan; M Bowman; S Okada; H Battifora; M Unger
Journal:  Proc Natl Acad Sci U S A       Date:  1981-04       Impact factor: 11.205

9.  Endocardial endothelium in the rat: cell shape and organization of the cytoskeleton.

Authors:  L J Andries; D L Brutsaert
Journal:  Cell Tissue Res       Date:  1993-07       Impact factor: 5.249

10.  Immunological identification and localization of the predominant nuclear protein of the amphibian oocyte nucleus.

Authors:  G Krohne; W W Franke
Journal:  Proc Natl Acad Sci U S A       Date:  1980-02       Impact factor: 11.205

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