TGF-BETA-S AND CAMP REGULATE GAP-43 EXPRESSION IN SCHWANN-CELLS AND REVEAL THE ASSOCIATION OF THIS PROTEIN WITH THE TRANS-GOLGI NETWORK

被引:23
作者
STEWART, HJS
CURTIS, R
JESSEN, KR
MIRSKY, R
机构
[1] UNIV LONDON UNIV COLL,DEPT ANAT & DEV BIOL,LONDON WC1E 6BT,ENGLAND
[2] REGENERON PHARMACEUT,TARRYTOWN,NY 10591
基金
英国惠康基金;
关键词
GOLGI APPARATUS; BREFELDIN A; RAT;
D O I
10.1111/j.1460-9568.1995.tb00696.x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
We have shown previously that growth-associated protein 43 (GAP-43) is expressed by rat Schwann cells and is restricted to non-myelin-forming Schwann cells in vivo. Here we examined the regulation of GAP-43 using agents that are known to control Schwann cell differentiation in vitro. GAP-43 protein and mRNA levels are decreased by forskolin and other agents that elevate intracellular cAMP (and promote expression of the myelinating Schwann cell phenotype). We also found that expression of GAP-43 protein but not mRNA is down-regulated by transforming growth factor betas (TGF-beta s). Moreover, TGF-beta treatment of Schwann cells results in cell clumping, process retraction and disappearance of GAP-43 from the plasma membrane, revealing that GAP-43 is associated with the Golgi apparatus. This association was confirmed by partial overlap of GAP-43 with the trans-Golgi network marker (23c) and the disruption of the Golgi with brefeldin A or monensin leading to altered GAP-43 distribution. Golgi-associated GAP-43 appeared to have the same molecular weight as the plasma membrane-associated GAP-43. Thus these results show that GAP-43 expression in Schwann cells is subject to regulation by both extracellular and intracellular signalling molecules and that Schwann cell GAP-43 is often associated with the Golgi apparatus.
引用
收藏
页码:1761 / 1772
页数:12
相关论文
共 62 条
[1]  
ALBERTS B, 1993, MOL BIOL CELL
[2]   NEURITE OUTGROWTH IN PC12 CELLS DEFICIENT IN GAP-43 [J].
BAETGE, EE ;
HAMMANG, JP .
NEURON, 1991, 6 (01) :21-30
[3]  
BASI GS, 1987, CELL, V49, P789
[4]   A MEMBRANE PHOSPHOPROTEIN ASSOCIATED WITH NEURAL DEVELOPMENT, AXONAL REGENERATION, PHOSPHOLIPID-METABOLISM, AND SYNAPTIC PLASTICITY [J].
BENOWITZ, LI ;
ROUTTENBERG, A .
TRENDS IN NEUROSCIENCES, 1987, 10 (12) :527-532
[5]  
BENOWITZ LI, 1988, J NEUROSCI, V8, P339
[6]   MEMBRANE INSERTION AT THE LEADING-EDGE OF MOTILE FIBROBLASTS [J].
BERGMANN, JE ;
KUPFER, A ;
SINGER, SJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1983, 80 (05) :1367-1371
[7]   GROWTH OF A RAT NEUROBLASTOMA CELL LINE IN SERUM-FREE SUPPLEMENTED MEDIUM [J].
BOTTENSTEIN, JE ;
SATO, GH .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1979, 76 (01) :514-517
[8]  
BROCKES JP, 1987, METHOD ENZYMOL, V147, P217
[9]   STUDIES ON CULTURED RAT SCHWANN-CELLS .1. ESTABLISHMENT OF PURIFIED POPULATIONS FROM CULTURES OF PERIPHERAL-NERVE [J].
BROCKES, JP ;
FIELDS, KL ;
RAFF, MC .
BRAIN RESEARCH, 1979, 165 (01) :105-118
[10]   ULTRASTRUCTURAL IMMUNOCYTOCHEMICAL LOCALIZATION OF B-50/GAP43, A PROTEIN KINASE-C SUBSTRATE, IN ISOLATED PRESYNAPTIC NERVE-TERMINALS AND NEURONAL GROWTH CONES [J].
CAMPAGNE, MV ;
OESTREICHER, AB ;
HENEGOUWEN, PMPVE ;
GISPEN, WH .
JOURNAL OF NEUROCYTOLOGY, 1989, 18 (04) :479-489