Anterograde axonal transport, transcytosis, and recycling of neurotrophic factors - The concept of trophic currencies in neural networks

被引:111
作者
von Bartheld, CS
Wang, XX
Butowt, R
机构
[1] Univ Nevada, Sch Med, Dept Physiol & Cell Biol, Reno, NV 89557 USA
[2] M Nencki Inst Expt Biol, Dept Neurophysiol, PL-02093 Warsaw, Poland
关键词
neurotrophic factor; anterograde axonal transport; transcytosis; neurotrophin; internalization; endocytosis; release; degradation; NGF; BDNF; NT-3; GDNF; IGF-I;
D O I
10.1385/MN:24:1-3:001
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Traditional views of neurotrophic factor biology held that trophic factors are released from target cells, retrogradely transported along their axons, and rapidly degraded upon arrival in cell bodies. Increasing evidence indicates that several trophic factors such as brain-derived neurotrophic factor (BDNF), fibroblast growth factor (FGF-2), glial cell-line derived neurotrophic factor (GDNF), insulin-like growth factor (IGF-1), and neurotrophin-3 (NT-3), can move anterogradely along axons. They can escape the degradative pathway upon internalization and are recycled for future uses. Internalized ligands can move through intermediary cells by transcytosis, presumably by endocytosis via endosomes to the Golgi system, by trafficking of the factor to dendrites or by sorting into anterograde axonal transport with subsequent release from axon terminals and uptake by second- or third-order target neurons. Such data suggest the existence of multiple "trophic currencies," which may be used over several steps in neural networks to enable nurturing relationships between connected neurons or glial cells, not unlike currency exchanges between trading partners in the world economy. Functions of multistep transfer of trophic material through neural networks may include regulation of neuronal survival, differentiation of phenotypes and dendritic morphology, synapse plasticity, as well as excitatory neurotransmission. The molecular mechanisms of sorting, trafficking, and release of trophic factors from distinct neuronal compartments are important for an understanding of neurotrophism, but they present challenging tasks owing to the low levels of the endogenous factors.
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页码:1 / 28
页数:28
相关论文
共 218 条
[1]   A BDNF AUTOCRINE LOOP IN ADULT SENSORY NEURONS PREVENTS CELL DEATH [J].
ACHESON, A ;
CONOVER, JC ;
FANDL, JP ;
DECHIARA, TM ;
RUSSELL, M ;
THADANI, A ;
SQUINTO, SP ;
YANCOPOULOS, GD ;
LINDSAY, RM .
NATURE, 1995, 374 (6521) :450-453
[2]   Nerve growth factor but not neurotrophin-3 is synthesized by hippocampal gabaergic neurons that project to the medial septum [J].
Acsády, L ;
Pascual, M ;
Rocamora, N ;
Soriano, E ;
Freund, TF .
NEUROSCIENCE, 2000, 98 (01) :23-31
[3]   Truncated TrkB mediates the endocytosis and release of BDNF and neurotrophin-4/5 by rat astrocytes and Schwann cells in vitro [J].
Alderson, RF ;
Curtis, R ;
Alterman, AL ;
Lindsay, RM ;
DiStefano, PS .
BRAIN RESEARCH, 2000, 871 (02) :210-222
[4]  
Aloyz R, 1999, LEARN MEMORY, V6, P216
[5]   Anterograde transport of brain-derived neurotrophic factor and its role in the brain [J].
Altar, CA ;
Cai, N ;
Bliven, T ;
Juhasz, M ;
Conner, JM ;
Acheson, AL ;
Lindsay, RM ;
Wiegand, SJ .
NATURE, 1997, 389 (6653) :856-860
[6]   Neurotrophin trafficking by anterograde transport [J].
Altar, CA ;
DiStefano, PS .
TRENDS IN NEUROSCIENCES, 1998, 21 (10) :433-437
[7]   The depolarisation-induced release of [I-125]BDNF from brain tissue [J].
AndroutsellisTheotokis, A ;
McCormack, WJ ;
Bradford, HF ;
Stern, GM ;
PliegoRivero, FB .
BRAIN RESEARCH, 1996, 743 (1-2) :40-48
[8]  
Aoki C, 2000, J NEUROSCI RES, V59, P454, DOI 10.1002/(SICI)1097-4547(20000201)59:3<454::AID-JNR21>3.3.CO
[9]  
2-8
[10]  
AYERLELIEVRE C, 1991, DEVELOPMENT, V111, P105