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SNAP-25对钙动力学的调节是GABA能和谷氨酸能对去极化反应性差异的基础。

SNAP-25 modulation of calcium dynamics underlies differences in GABAergic and glutamatergic responsiveness to depolarization.

作者信息

Verderio Claudia, Pozzi Davide, Pravettoni Elena, Inverardi Francesca, Schenk Ursula, Coco Silvia, Proux-Gillardeaux Véronique, Galli Thierry, Rossetto Ornella, Frassoni Carolina, Matteoli Michela

机构信息

Department of Medical Pharmacology, CNR Institute of Neuroscience, Center of Excellence for Neurodegenerative Diseases, University of Milano, Via vanvitelli 32, Milano 20129, Italy.

出版信息

Neuron. 2004 Feb 19;41(4):599-610. doi: 10.1016/s0896-6273(04)00077-7.

Abstract

SNAP-25 is a component of the SNARE complex implicated in synaptic vesicle exocytosis. In this study, we demonstrate that hippocampal GABAergic synapses, both in culture and in brain, lack SNAP-25 and are resistant to the action of botulinum toxins type A and E, which cleave this SNARE protein. Relative to glutamatergic neurons, which express SNAP-25, GABAergic cells were characterized by a higher calcium responsiveness to depolarization. Exogenous expression of SNAP-25 in GABAergic interneurons lowered calcium responsiveness, and SNAP-25 silencing in glutamatergic neurons increased calcium elevations evoked by depolarization. Expression of SNAP-25(1-197) but not of SNAP-25(1-180) inhibited calcium responsiveness, pointing to the involvement of the 180-197 residues in the observed function. These data indicate that SNAP-25 is crucial for the regulation of intracellular calcium dynamics and, possibly, of network excitability. SNAP-25 is therefore a multifunctional protein that participates in exocytotic function both at the mechanistic and at the regulatory level.

摘要

SNAP - 25是参与突触小泡胞吐作用的SNARE复合体的一个组成部分。在本研究中,我们证明,无论是在培养物中还是在大脑中,海马体GABA能突触均缺乏SNAP - 25,并且对可切割该SNARE蛋白的A型和E型肉毒杆菌毒素的作用具有抗性。相对于表达SNAP - 25的谷氨酸能神经元,GABA能细胞的特征在于对去极化具有更高的钙反应性。在GABA能中间神经元中外源表达SNAP - 25会降低钙反应性,而在谷氨酸能神经元中沉默SNAP - 25会增加去极化诱发的钙升高。SNAP - 25(1 - 197)而非SNAP - 25(1 - 180)的表达抑制了钙反应性,表明180 - 197位残基参与了所观察到的功能。这些数据表明,SNAP - 25对于调节细胞内钙动力学以及可能对于调节网络兴奋性至关重要。因此,SNAP - 25是一种多功能蛋白,在机制和调节水平上均参与胞吐功能。

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