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用于囊泡融合的突触前钙离子传感器的变构调节。

Allosteric modulation of the presynaptic Ca2+ sensor for vesicle fusion.

作者信息

Lou Xuelin, Scheuss Volker, Schneggenburger Ralf

机构信息

AG Synaptische Dynamik und Modulation und Abt. Membranbiophysik, Max-Planck-Institut für biophysikalische Chemie, Am Fassberg 11, D-37077 Göttingen, Germany.

出版信息

Nature. 2005 May 26;435(7041):497-501. doi: 10.1038/nature03568.

Abstract

Neurotransmitter release is triggered by an increase in the cytosolic Ca2+ concentration ([Ca2+]i), but it is unknown whether the Ca2+-sensitivity of vesicle fusion is modulated during synaptic plasticity. We investigated whether the potentiation of neurotransmitter release by phorbol esters, which target presynaptic protein kinase C (PKC)/munc-13 signalling cascades, exerts a direct effect on the Ca2+-sensitivity of vesicle fusion. Using direct presynaptic Ca2+-manipulation and Ca2+ uncaging at a giant presynaptic terminal, the calyx of Held, we show that phorbol esters potentiate transmitter release by increasing the apparent Ca2+-sensitivity of vesicle fusion. Phorbol esters potentiate Ca2+-evoked release as well as the spontaneous release rate. We explain both effects by an increased fusion 'willingness' in a new allosteric model of Ca2+-activation of vesicle fusion. In agreement with an allosteric mechanism, we observe that the classically high Ca2+ cooperativity in triggering vesicle fusion (approximately 4) is gradually reduced below 3 microM [Ca2+]i, reaching a value of <1 at basal [Ca2+]i. Our data indicate that spontaneous transmitter release close to resting [Ca2+]i is a consequence of an intrinsic property of the molecular machinery that mediates synaptic vesicle fusion.

摘要

神经递质的释放是由胞质Ca2+浓度([Ca2+]i)升高触发的,但尚不清楚在突触可塑性过程中囊泡融合的Ca2+敏感性是否受到调节。我们研究了靶向突触前蛋白激酶C(PKC)/munc-13信号级联的佛波酯增强神经递质释放是否对囊泡融合的Ca2+敏感性有直接影响。在巨大的突触前终末——Held壶腹,通过直接的突触前Ca2+操作和Ca2+光解笼锁,我们发现佛波酯通过增加囊泡融合的表观Ca2+敏感性来增强递质释放。佛波酯增强Ca2+诱发的释放以及自发释放速率。在囊泡融合Ca2+激活的新变构模型中,我们通过增加融合“意愿”来解释这两种效应。与变构机制一致我们观察到,在触发囊泡融合时经典的高Ca2+协同性(约为4)在[Ca2+]i低于3μM时逐渐降低,在基础[Ca2+]i时降至<1。我们的数据表明,接近静息[Ca2+]i时的自发递质释放是介导突触囊泡融合的分子机制内在特性的结果。

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