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短期可塑性中Rab3的钙依赖性调节

Calcium-dependent regulation of rab3 in short-term plasticity.

作者信息

Doussau F, Clabecq A, Henry J P, Darchen F, Poulain B

机构信息

Laboratoire de Neurobiologie Cellulaire, UPR 9009, Centre National de la Recherche Scientifique, F-67084 Strasbourg Cedex, France.

出版信息

J Neurosci. 1998 May 1;18(9):3147-57. doi: 10.1523/JNEUROSCI.18-09-03147.1998.

Abstract

The Rab3 proteins are monomeric GTP-binding proteins associated with secretory vesicles. In their active GTP-bound state, Rab3 proteins are involved in the regulation of hormone secretion and neurotransmitter release. This action is thought to involve specific effectors, including two Ca2+-binding proteins, Rabphilin and Rim. Rab3 acts late in the exocytotic process, in a cell domain in which the intracellular Ca2+ concentration is susceptible to rapid changes. Therefore, we examined the possible Ca2+-dependency of the regulatory action of GTP-bound Rab3 and wild-type Rab3 on neuroexocytosis at identified cholinergic synapses in Aplysia californica. The effects of recombinant GTPase-deficient Aplysia-Rab3 (apRab3-Q80L) or wild-type apRab3 were studied on evoked acetylcholine release. Intraneuronal application of apRab3-Q80L in identified neurons of the buccal ganglion of Aplysia led to inhibition of neurotransmission; wild-type apRab3 was less effective. Intracellular chelation of Ca2+ ions by EGTA greatly potentiated the inhibitory action of apRab3-Q80L. Train and paired-pulse facilitation, two Ca2+-dependent forms of short-term plasticity induced by a rise in intraterminal Ca2+ concentration, were increased after injection of apRab3-Q80L. This result suggests that the inhibition exerted by GTP-bound Rab3 on neuroexocytosis is reduced during transient augmentations of intracellular Ca2+ concentration. Therefore, a Ca2+-dependent modulation of GTP-bound Rab3 function may contribute to short-term plasticity.

摘要

Rab3蛋白是与分泌囊泡相关的单体GTP结合蛋白。处于活性GTP结合状态时,Rab3蛋白参与激素分泌和神经递质释放的调节。这种作用被认为涉及特定的效应器,包括两种钙结合蛋白,Rabphilin和Rim。Rab3在胞吐过程后期起作用,在细胞内钙离子浓度容易快速变化的细胞区域。因此,我们研究了GTP结合的Rab3和野生型Rab3对加州海兔已鉴定胆碱能突触处神经胞吐作用的调节作用可能存在的钙依赖性。研究了重组的GTP酶缺陷型海兔Rab3(apRab3-Q80L)或野生型apRab3对诱发的乙酰胆碱释放的影响。在海兔颊神经节已鉴定的神经元中向神经元内注射apRab3-Q80L会导致神经传递受到抑制;野生型apRab3的效果较差。用EGTA对钙离子进行细胞内螯合可大大增强apRab3-Q80L的抑制作用。在注射apRab3-Q80L后,由终末内钙离子浓度升高诱导的两种钙依赖性短期可塑性形式,即串刺激和配对脉冲易化作用增强。该结果表明,在细胞内钙离子浓度短暂升高期间,GTP结合的Rab3对神经胞吐作用的抑制作用减弱。因此,GTP结合的Rab3功能的钙依赖性调节可能有助于短期可塑性。

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