DEPHOSPHORYLATED SYNAPSIN-I ANCHORS SYNAPTIC VESICLES TO ACTIN CYTOSKELETON - AN ANALYSIS BY VIDEOMICROSCOPY

被引:140
作者
CECCALDI, PE
GROHOVAZ, F
BENFENATI, F
CHIEREGATTI, E
GREENGARD, P
VALTORTA, F
机构
[1] IST SCI SAN RAFFAELE,DIBIT,CNR,CTR CYTOPHARMACOL,DEPT MED PHARMACOL,B CECCARELLI CTR,I-20132 MILAN,ITALY
[2] UNIV ROMA TOR VERGATA,DEPT EXPTL MED & BIOCHEM SCI,PHYSIOL SECT,I-00173 ROME,ITALY
[3] UNIV MODENA,DEPT BIOMED SCI,I-41100 MODENA,ITALY
[4] ROCKEFELLER UNIV,MOLEC & CELLULAR NEUROSCI LAB,NEW YORK,NY 10021
关键词
D O I
10.1083/jcb.128.5.905
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Synapsin I is a synaptic vesicle-associated protein which inhibits neurotransmitter release, an effect which is abolished upon its phosphorylation by Ca2+/calmodulin-dependent protein kinase II (CaM kinase II). Based on indirect evidence, it was suggested that this effect on neurotransmitter release may be achieved by the reversible anchoring of synaptic vesicles to the actin cytoskeleton of the nerve terminal. Using video-enhanced microscopy, we have now obtained experimental evidence in support of this model: the presence of dephosphorylated synapsin I is necessary for synaptic vesicles to bind actin; synapsin I is able to promote actin polymerization and bundling of actin filaments in the presence of synaptic vesicles; the ability to cross-link synaptic vesicles and actin is specific for synapsin I and is not shared by other basic proteins; the cross-linking between synaptic vesicles and actin is specific for the membrane of synaptic vesicles and does not reflect either a non-specific binding of membranes to the highly surface active synapsin I molecule or trapping of vesicles within the thick bundles of actin filaments; the formation of the ternary complex is virtually abolished when synapsin I is phosphorylated by CaM kinase II. The data indicate that synapsin I markedly affects synaptic vesicle traffic and cytoskeleton assembly in the nerve terminal and provide a molecular basis for the ability of synapsin I to regulate the availability of synaptic vesicles for exocytosis and thereby the efficiency of neurotransmitter release.
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页码:905 / 912
页数:8
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