Ca2+-dependent release of Munc18-1 from presynaptic mGluRs in short-term facilitation

被引:25
作者
Nakajima, Yoshiaki [1 ]
Mochida, Sumiko [2 ]
Okawa, Katsuya [3 ]
Nakanishi, Shigetada [1 ,4 ]
机构
[1] Kyoto Univ, Dept Biol Sci, Fac Med, Kyoto 6068501, Japan
[2] Tokyo Med Univ, Dept Physiol, Tokyo 1608402, Japan
[3] Kyowa Hakko Kirin Co Ltd, Innovat Drug Res Labs, Takasaki, Gunma 3701295, Japan
[4] Osaka Biosci Inst, Dept Syst Biol, Suita, Osaka 5650874, Japan
关键词
calmodulin; synaptic vesicle release; plasticity; glutamate receptor; Ca2+-sensing; METABOTROPIC GLUTAMATE RECEPTORS; CORE VESICLE EXOCYTOSIS; CALMODULIN; BINDING; SECRETION; SUBTYPE; CALCIUM; CA2+;
D O I
10.1073/pnas.0910088106
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
Short-term synaptic facilitation plays an important role in information processing in the central nervous system. Although the crucial requirement of presynaptic Ca2+ in the expression of this plasticity has been known for decades, the molecular mechanisms underlying the plasticity remain controversial. Here, we show that presynaptic metabotropic glutamate receptors (mGluRs) bind and release Munc18-1 (also known as rbSec1/nSec1), an essential protein for synaptic transmission, in a Ca2+-dependent manner, whose actions decrease and increase synaptic vesicle release, respectively. We found that mGluR4 bound Munc18-1 with an EC50 for Ca2+ of 168 nM, close to the resting Ca2+ concentration, and that the interaction was disrupted by Ca2+-activated calmodulin (CaM) at higher concentrations of Ca2+. Consistently, the Munc18-1-interacting domain of mGluR4 suppressed both dense-core vesicle secretion from permeabilized PC12 cells and synaptic transmission in neuronal cells. Furthermore, this domain was sufficient to induce paired-pulse facilitation. Obviously, the role of mGluR4 in these processes was independent of its classical function of activation by glutamate. On the basis of these experimental data, we propose the following model: When neurons are not active, Munc18-1 is sequestered by mGluR4, and therefore the basal synaptic transmission is kept low. After the action potential, the increase in the Ca2+ level activates CaM, which in turn liberates Munc18-1 from mGluR4, causing short-term synaptic facilitation. Our findings unite and provide a new insight into receptor signaling and vesicular transport, which are pivotal activities involved in a variety of cellular processes.
引用
收藏
页码:18385 / 18389
页数:5
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