Growth factor regulation of cell growth and proliferation in the nervous systemA new intracrine nuclear mechanism

被引:0
作者
M. K. Stachowiak
J. Moffett
P. Maher
J. Tucholski
E. K. Stachowiak
机构
[1] Barrow Neurological Institute,Laboratory of Molecular Neurobiology
[2] The Scripps Research Institute,Department of Microbiology
[3] University of Gdansk,undefined
来源
Molecular Neurobiology | 1997年 / 15卷
关键词
FGF-2; FGF receptor; nuclear localization; cell plasticity; astrocytes; glioma cells;
D O I
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学科分类号
摘要
This article discusses a novel intracrine mechanism of growth-factor action in the nervous system whereby fibroblast growth factor-2 (FGF-2) and its receptor accumulate in the cell nucleus and act as mediators in the control of cell growth and proliferation. In human and rat brain the levels and subcellular localization of FGF-2 differ between quiescent and reactive astrocytes. Quiescent cells express a low level of FGF-2, which is located predominantly within the cytoplasm. In reactive astrocytes, the expression of FGF-2 increases and the proteins are found in both the cytoplasm and nucleus. In glioma tumors, FGF-2 is overexpressed in the nuclei of neoplastic cells. Similar changes in FGF-2 expression and localization are found in vitro. The nuclear accumulation of FGF-2 reflects a transient activation of the FGF-2 gene by potentially novel transactivating factors interacting with an upstream regulatory promoter region. In parallel with FGF-2, the nuclei of astrocytes contain the high-affinity FGF-2 receptor, FGFR1. Nuclear FGFR1 is full length, retains kinase activity, and is localized within the nuclear interior in association with the nuclear matrix. Transfection of either FGF-2 or FGFR1 into cells that do not normally express these proteins results in their nuclear accumulation and concomitant increases in cell proliferation. A similar regulation of nuclear FGF-2 and FGFR1 is observed in neural crest-derived adrenal medullary cells and of FGF-2 in the nuclei of cerebellar neurons. Thus, the regulation of the nuclear content of FGF-2 and FGFR1 could serve as a novel mechanism controlling growth and proliferation of glial and neuronal cells.
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页码:257 / 283
页数:26
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共 547 条
[1]  
Abraham J. A.(1986)Nucleotide sequence of a bovine clone encoding the angiogenic protein basic fibroblast growth factor Science 233 545-548
[2]  
Mergia A.(1986)Human basic fibroblast growth factor: nucleotide sequence and genomic organization EMBO J. 5 2523-2528
[3]  
Whang J. L.(1994)Glial hypertrophy is associated with synaptogenesis following motor-skill learning, but not with angiogenesis following exercise Glia 11 73-80
[4]  
Tumolo A.(1992)bFGF in astroglial, microglial, and neuronal cultures: characterization of binding sites and modulation of release by lymphokines and trophic factors J. Neurosci. 12 1668-1678
[5]  
Friedman J.(1993)Structural changes accompanying memory storage Ann. Rev. Physiol. 55 397-426
[6]  
Hjerrild K. A.(1989)Fibroblast gwoth factors Brit. Med. Bull. 45 438-452
[7]  
Gospodarowicz D.(1990)Translocation of the bFGF to the nucleus is G1 phase cell cycle specific in bovine aortic endothelial cells EMBO J. 9 1511-1517
[8]  
Fiddes J. C.(1993)Novel opioid binding sites associated with nuclei of NG 108–15 neurohybrid cells J. Neurosci. 13 104-114
[9]  
Abraham J. A.(1974)Nuclear protein matrix: association with newly synthesized DNA Science 189 291-292
[10]  
Whang J. L.(1995)Localization of basic fibroblast growth factor in bovine adrenal chromaffin cells J. Neurochem. 64 1521-1527