COMPUTER MODELING OF SYNAPSIN-I BINDING TO SYNAPTIC VESICLES AND F-ACTIN - IMPLICATIONS FOR REGULATION OF NEUROTRANSMITTER RELEASE

被引:56
作者
BENFENATI, F
VALTORTA, F
GREENGARD, P
机构
[1] ROCKEFELLER UNIV,MOLEC & CELLULAR NEUROSCI LAB,1230 YORK AVE,NEW YORK,NY 10021
[2] UNIV MODENA,INST HUMAN PHYSIOL,I-41100 MODENA,ITALY
[3] UNIV MILAN,NATL RES COUNCIL,CTR CYTOPHARMACOL,DEPT MED PHARMACOL,I-20129 MILAN,ITALY
[4] ROCKEFELLER UNIV,MOLEC & CELLULAR NEUROSCI LAB,NEW YORK,NY 10021
关键词
PROTEIN PHOSPHORYLATION; CYTOSKELETON; EXOCYTOSIS; NERVE TERMINAL;
D O I
10.1073/pnas.88.2.575
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Synapsin I is a neuron-specific phosphoprotein that binds to small synaptic vesicles and actin filaments in a phosphorylation-dependent fashion. It has been hypothesized that dephosphorylated synapsin I inhibits neurotransmitter release either by forming a cage around synaptic vesicles (cage model) or by anchoring them to the F-actin cytoskeleton of the nerve terminal (crosslinking model). Computer modeling was performed with the aim of testing the impact of phosphorylation on the molecular interactions of synapsin I within the nerve terminal. The results of the simulation experiments demonstrate that in the crosslinking model the phosphorylation of synapsin I causes a severalfold increase in the number of vesicles released from the cytoskeleton and that in the cage model the phosphorylation induces a 2-fold increase in the number of vesicles bearing one or more unsaturated synapsin I binding sites. These data are compatible with the view that the function of synapsin I in the short-term regulation of neuro-transmitter release is to induce a phosphorylation-dependent transition of synaptic vesicles from a "reserve pool" to a readily "releasable pool" of vesicles.
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页码:575 / 579
页数:5
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