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突触结合蛋白IV:肽能神经末梢的多功能调节因子。

Synaptotagmin IV: a multifunctional regulator of peptidergic nerve terminals.

作者信息

Zhang Zhenjie, Bhalla Akhil, Dean Camin, Chapman Edwin R, Jackson Meyer B

机构信息

Department of Physiology, University of Wisconsin School of Medicine and Public Health, 1300 University Avenue, Madison, Wisconsin 53706, USA.

出版信息

Nat Neurosci. 2009 Feb;12(2):163-71. doi: 10.1038/nn.2252. Epub 2009 Jan 11.

Abstract

Many members of the synaptotagmin (Syt) protein family bind Ca(2+) and trigger exocytosis, but some Syt proteins appear to have no Ca(2+)-dependent actions and their biological functions remain obscure. Syt IV is an activity-induced brain protein with no known Ca(2+)-dependent interactions and its subcellular localization and biological functions have sparked considerable controversy. We found Syt IV on both micro- and dense-core vesicles in posterior pituitary nerve terminals in mice. In terminals from Syt IV knockout mice compared with those from wild types, low Ca(2+) entry triggered more exocytosis, high Ca(2+) entry triggered less exocytosis and endocytosis was accelerated. In Syt IV knockouts, dense-core and microvesicle fusion was enhanced in cell-attached patches and dense-core vesicle fusion pores had conductances that were half as large as those in wild types. Given the neuroendocrine functions of the posterior pituitary, changes in Syt IV levels could be involved in endocrine transitions involving alterations in the release of the neuropeptides oxytocin and vasopressin.

摘要

许多突触结合蛋白(Syt)家族成员能结合Ca(2+)并触发胞吐作用,但一些Syt蛋白似乎没有Ca(2+)依赖性作用,其生物学功能仍不清楚。Syt IV是一种活性诱导型脑蛋白,不存在已知的Ca(2+)依赖性相互作用,其亚细胞定位和生物学功能引发了诸多争议。我们在小鼠垂体后叶神经末梢的微囊泡和致密核心囊泡上均发现了Syt IV。与野生型小鼠的神经末梢相比,Syt IV基因敲除小鼠的神经末梢中,低Ca(2+)内流引发更多的胞吐作用,高Ca(2+)内流引发较少的胞吐作用,且内吞作用加速。在Syt IV基因敲除小鼠中,细胞贴附膜片上致密核心囊泡与微囊泡的融合增强,致密核心囊泡融合孔的电导仅为野生型小鼠的一半。鉴于垂体后叶的神经内分泌功能,Syt IV水平的变化可能参与了涉及神经肽催产素和加压素释放改变的内分泌转变过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e282/2710815/6daaacfb048f/nihms103096f1.jpg

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