Vesicle-associated membrane protein-2/Synaptobrevin binding to Synaptotagmin I promotes O-glycosylation of Synaptotagmin I

被引:42
作者
Fukuda, M [1 ]
机构
[1] RIKEN, Inst Phys & Chem Res, Fukuda Initiat Res Unit, Wako, Saitama 3510198, Japan
关键词
D O I
10.1074/jbc.M204056200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Synaptotagmin I (Syt I), an evolutionarily conserved integral membrane protein of synaptic vesicles, is now known to regulate Ca2+-dependent neurotransmitter release. Syt I protein should undergo several post-translational modifications before maturation and subsequent functioning on synaptic vesicles (e.g. N-glycosylation and fatty acylation in vertebrate Syt I), because the apparent molecular weight of Syt I on synaptic vesicles (mature form, 65,000) was much higher than the calculated molecular weight (47,400) predicted from the cDNA sequences both in vertebrates and invertebrates. Common post-translational modification(s) of Syt I conserved across phylogeny, however, have never been elucidated. In the present study, I discovered that dithreonine residues (Thr-15 and Thr-16) at the intravesicular domain of mouse Syt I are post-translationally modified by a complex form of O-linked sugar (i.e. the addition of sialic acids) in PC12 cells and that the O-glycosylation of Syt I in COS-7 cells depends on the coexpression of vesicle-associated membrane protein-2 (VAMP-2)/synaptobrevin. I also showed that a transmembrane domain of Syt I directly interacts with isolated VAMP-2, but not VAMP-2, in the heterotrimeric SNARE (SNAP receptor) complex (vesicle SNARE, VAMP-2, and two target SNARES, syntaxin IA and SNAP-25). Since di-Thr or di-Ser residues are often found at the intravesicular domain of invertebrate Syt I, and VAMP-dependent O-glycosylation was also observed in squid Syt expressed in COS-7 cells, I propose that VAMP-dependent O-glycosylation of Syt I is a common modification during evolution and may have important role(s) in synaptic vesicle trafficking.
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页码:30351 / 30358
页数:8
相关论文
共 88 条
[71]   THE IDENTIFICATION OF A NOVEL SYNAPTOSOMAL-ASSOCIATED PROTEIN, SNAP-25, DIFFERENTIALLY EXPRESSED BY NEURONAL SUBPOPULATIONS [J].
OYLER, GA ;
HIGGINS, GA ;
HART, RA ;
BATTENBERG, E ;
BILLINGSLEY, M ;
BLOOM, FE ;
WILSON, MC .
JOURNAL OF CELL BIOLOGY, 1989, 109 (06) :3039-3052
[72]  
PERIN MS, 1991, J BIOL CHEM, V266, P623
[73]  
Reist NE, 1998, J NEUROSCI, V18, P7662
[74]   Synaptotagmin V is targeted to dense-core vesicles that undergo calcium-dependent exocytosis in PC12 cells [J].
Saegusa, C ;
Fukuda, M ;
Mikoshiba, K .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (27) :24499-24505
[75]   A v-SNARE participates in synaptic vesicle formation mediated by the AP3 adaptor complex [J].
Salem, N ;
Faúndez, V ;
Horng, JT ;
Kelly, RB .
NATURE NEUROSCIENCE, 1998, 1 (07) :551-556
[76]   Synaptotagmins: More isoforms than functions? [J].
Schiavo, G ;
Osborne, SL ;
Sgouros, JG .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1998, 248 (01) :1-8
[77]   Binding of the synaptic vesicle v-SNARE, synaptotagmin, to the plasma membrane t-SNARE, SNAP-25, can explain docked vesicles at neurotoxin-treated synapses [J].
Schiavo, G ;
Stenbeck, G ;
Rothman, JE ;
Sollner, TH .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (03) :997-1001
[78]   A PROTEIN ASSEMBLY-DISASSEMBLY PATHWAY IN-VITRO THAT MAY CORRESPOND TO SEQUENTIAL STEPS OF SYNAPTIC VESICLE DOCKING, ACTIVATION, AND FUSION [J].
SOLLNER, T ;
BENNETT, MK ;
WHITEHEART, SW ;
SCHELLER, RH ;
ROTHMAN, JE .
CELL, 1993, 75 (03) :409-418
[79]   Synaptotagmins:: Why so many? [J].
Südhof, TC .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (10) :7629-7632
[80]   Synaptotagmin VII as a plasma membrane Ca2+ sensor in exocytosis [J].
Sugita, S ;
Han, WP ;
Butz, S ;
Liu, XR ;
Fernández-Chacón, R ;
Lao, Y ;
Südhof, TC .
NEURON, 2001, 30 (02) :459-473