Synaptotagmin I synchronizes transmitter release in mouse hippocampal neurons

被引:131
作者
Nishiki, T [1 ]
Augustine, GJ [1 ]
机构
[1] Duke Univ, Med Ctr, Dept Neurobiol, Durham, NC 27710 USA
关键词
synaptic transmission; synaptic vesicle; calcium; exocytosis; endocytosis; FM; 4-64;
D O I
10.1523/JNEUROSCI.1563-04.2004
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
We have asked whether loss of the Ca2+ sensor protein synaptotagmin I influences the total amount of neurotransmitter released after a presynaptic action potential. Hippocampal neurons from synaptotagmin I knock-out mice had a greatly reduced fast synchronous component of glutamate release, as reported previously. However, the amount of glutamate released during the slow asynchronous component increased in these knock-out neurons. As a result of these changes in the kinetics of release, there was no significant difference between wild-type and knock-out neurons in the total amount of transmitter released within 400 msec after a presynaptic stimulus. Fluorescence imaging experiments demonstrated that wild-type and knock-out neurons take up and release similar amounts of FM dye after depolarization, indicating normal amounts of synaptic vesicle trafficking in the knock-out neurons. These results indicate that synaptotagmin I knock-out neurons are fully capable of releasing neurotransmitter, with the increased slow component of release serving to compensate for loss of the fast component. Thus, synaptotagmin I synchronizes the rapid release of neurotransmitters after Ca2+ entry into presynaptic terminals and also appears to suppress the slower, asynchronous form of transmitter release.
引用
收藏
页码:6127 / 6132
页数:6
相关论文
共 45 条
[1]   How does calcium trigger neurotransmitter release? [J].
Augustine, GJ .
CURRENT OPINION IN NEUROBIOLOGY, 2001, 11 (03) :320-326
[2]   Fusion pore dynamics are regulated by synaptotagmin•t-SNARE interactions [J].
Bai, JH ;
Wang, CT ;
Richards, DA ;
Jackson, MB ;
Chapman, ER .
NEURON, 2004, 41 (06) :929-942
[3]   PIP2 increases the speed of response of synaptotagmin and steers its membrane-penetration activity toward the plasma membrane [J].
Bai, JH ;
Tucker, WC ;
Chapman, ER .
NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2004, 11 (01) :36-44
[4]   EXCITATORY AND INHIBITORY AUTAPTIC CURRENTS IN ISOLATED HIPPOCAMPAL-NEURONS MAINTAINED IN CELL-CULTURE [J].
BEKKERS, JM ;
STEVENS, CF .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1991, 88 (17) :7834-7838
[5]   Imaging exocytosis and endocytosis [J].
Betz, WJ ;
Mao, F ;
Smith, CB .
CURRENT OPINION IN NEUROBIOLOGY, 1996, 6 (03) :365-371
[6]   INHIBITION OF NEUROTRANSMITTER RELEASE BY C2-DOMAIN PEPTIDES IMPLICATES SYNAPTOTAGMIN IN EXOCYTOSIS [J].
BOMMERT, K ;
CHARLTON, MP ;
DEBELLO, WM ;
CHIN, GJ ;
BETZ, H ;
AUGUSTINE, GJ .
NATURE, 1993, 363 (6425) :163-165
[7]   SYNAPTOTAGMIN - A CALCIUM SENSOR ON THE SYNAPTIC VESICLE SURFACE [J].
BROSE, N ;
PETRENKO, AG ;
SUDHOF, TC ;
JAHN, R .
SCIENCE, 1992, 256 (5059) :1021-1025
[8]   Synaptotagmin:: A Ca2+ sensor that triggers exocytosis? [J].
Chapman, ER .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2002, 3 (07) :498-508
[9]   Kinetics of synaptotagmin responses to Ca2+ and assembly with the core SNARE complex onto membranes [J].
Davis, AF ;
Bai, JH ;
Fasshauer, D ;
Wolowick, MJ ;
Lewis, JL ;
Chapman, ER .
NEURON, 1999, 24 (02) :363-376
[10]   SYNAPTIC TRANSMISSION PERSISTS IN SYNAPTOTAGMIN MUTANTS OF DROSOPHILA [J].
DIANTONIO, A ;
PARFITT, KD ;
SCHWARZ, TL .
CELL, 1993, 73 (07) :1281-1290