Literature DB >> 1847665

Human glial fibrillary acidic protein: complementary DNA cloning, chromosome localization, and messenger RNA expression in human glioma cell lines of various phenotypes.

E Bongcam-Rudloff1, M Nistér, C Betsholtz, J L Wang, G Stenman, K Huebner, C M Croce, B Westermark.   

Abstract

Glial fibrillary acidic protein (GFAP) is a constituent of intermediate filaments of glial cells of the astrocyte lineage. We cloned a human GFAP complementary DNA, deduced the amino acid sequence, and established the chromosomal location (17q21) of the GFAP gene by Southern blot hybridization of somatic cell hybrids and by in situ hybridization. The authenticity of the complementary DNA was proven by expressing it in glioma cells lacking endogenous GFAP; after microinjection of the complementary DNA, such cells became positive for staining with GFAP antibodies. The levels of fibronectin (FN) and GFAP mRNA of ten human glioblastoma cell lines, determined by Northern blot hybridization of RNA, were related to other phenotypic characteristics [cell morphology and expression of the genes encoding platelet-derived growth factor (PDGF) receptors]. A high expression of GFAP mRNA was found only in cells lacking fibronectin mRNA and protein. Glioma cells with a fibroblastic phenotype (bipolar, FN+/GFAP-) were found to express both types of PDGF receptors (alpha and beta). Relatively high levels of PDGF alpha-receptor mRNA, in the absence of beta-receptor expression, were found in cell lines that express GFAP and lack detectable levels of fibronectin mRNA. The findings are compatible with the idea that the genes encoding PDGF receptors in glioma cells are regulated in concert with other genes, the expression of which may reflect the developmental program of normal glia cell lineages.

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Year:  1991        PMID: 1847665

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  14 in total

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Authors:  J R Murrell; D Koller; T Foroud; M Goedert; M G Spillantini; H J Edenberg; M R Farlow; B Ghetti
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4.  Induction of differentiation by wild-type p53 gene in a human glioma cell line.

Authors:  T Kokunai; A Kawamura; N Tamaki
Journal:  J Neurooncol       Date:  1997-04       Impact factor: 4.130

5.  Products of cells from gliomas: IX. Evidence that two fundamentally different mechanisms change extracellular matrix expression by gliomas.

Authors:  P E McKeever; J Varani; S M Papadopoulos; M Wang; J P McCoy
Journal:  J Neurooncol       Date:  1995       Impact factor: 4.130

6.  Characterization of a continuous human glioma cell line DBTRG-05MG: growth kinetics, karyotype, receptor expression, and tumor suppressor gene analyses.

Authors:  C A Kruse; D H Mitchell; B K Kleinschmidt-DeMasters; W A Franklin; H G Morse; E B Spector; K O Lillehei
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7.  Glial fibrillary acidic protein filaments can tolerate the incorporation of assembly-compromised GFAP-delta, but with consequences for filament organization and alphaB-crystallin association.

Authors:  Ming-Der Perng; Shu-Fang Wen; Terry Gibbon; Jinte Middeldorp; Jacqueline Sluijs; Elly M Hol; Roy A Quinlan
Journal:  Mol Biol Cell       Date:  2008-08-06       Impact factor: 4.138

8.  Co-expression of low molecular weight neurofilament protein and glial fibrillary acidic protein in established human glioma cell lines.

Authors:  T Tlhyama; V M Lee; J Q Trojanowski
Journal:  Am J Pathol       Date:  1993-03       Impact factor: 4.307

9.  Expression of 300-kilodalton intermediate filament-associated protein distinguishes human glioma cells from normal astrocytes.

Authors:  H Y Yang; N Lieska; R Glick; D Shao; G D Pappas
Journal:  Proc Natl Acad Sci U S A       Date:  1993-09-15       Impact factor: 11.205

10.  Differentiation and growth inhibition of glioma cells induced by transfer of trk A proto-oncogene.

Authors:  T Kokunai; H Iguchi; N Tamaki
Journal:  J Neurooncol       Date:  1999-03       Impact factor: 4.506

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