Latham Catherine F, Osborne Shona L, Cryle Max J, Meunier Frederic A
Molecular Dynamics of Synaptic Function Laboratory, School of Biomedical Sciences, The University of Queensland, St Lucia, Queensland, Australia.
J Neurochem. 2007 Mar;100(6):1543-54. doi: 10.1111/j.1471-4159.2006.04286.x. Epub 2006 Dec 23.
Neuronal communication relies on the fusion of neurotransmitter-containing vesicles with the neuronal plasma membrane. Recent genetic studies have highlighted the critical role played by polyunsaturated fatty acids in neurotransmission, however, there is little information available about which fatty acids act on exocytosis and, more importantly, by what mechanism. We have used permeabilized chromaffin cells to screen various fatty acids of the n-3 and n-6 series for their acute effects on exocytosis. We have demonstrated that an n-6 series polyunsaturated fatty acid, arachidonic acid, potentiates secretion from intact neurosecretory cells regardless of the secretagogue used. We have shown that arachidonic acid dose dependently increases soluble NSF attachment protein receptor complex formation in chromaffin cells and bovine cortical brain extracts and that a non-hydrolysable analogue of arachidonic acid causes a similar increase in SNARE complex formation. This prompted us to examine the effect of arachidonic acid on SNARE protein interactions with Munc18a, a protein known to prevent Syntaxin1a engagement into the SNARE complex in vitro. In the presence of arachidonic acid, we show that Munc18a can interact with the neuronal SNARE complex in a dose-dependent manner. We further demonstrate that arachidonic acid directly interacts with Syntaxin1a.
神经元通讯依赖于含有神经递质的囊泡与神经元质膜的融合。最近的遗传学研究突出了多不饱和脂肪酸在神经传递中所起的关键作用,然而,关于哪些脂肪酸作用于胞吐作用,更重要的是,通过何种机制起作用,目前几乎没有相关信息。我们利用透化的嗜铬细胞筛选了n-3和n-6系列的各种脂肪酸对胞吐作用的急性影响。我们已经证明,一种n-6系列多不饱和脂肪酸,花生四烯酸,无论使用何种促分泌剂,都能增强完整神经分泌细胞的分泌。我们已经表明,花生四烯酸剂量依赖性地增加嗜铬细胞和牛大脑皮层提取物中可溶性NSF附着蛋白受体复合物的形成,并且花生四烯酸的一种不可水解类似物会导致SNARE复合物形成类似的增加。这促使我们研究花生四烯酸对SNARE蛋白与Munc18a相互作用的影响,Munc18a是一种已知在体外可阻止Syntaxin1a参与SNARE复合物的蛋白质。在花生四烯酸存在的情况下,我们表明Munc18a可以以剂量依赖性方式与神经元SNARE复合物相互作用。我们进一步证明花生四烯酸直接与Syntaxin1a相互作用。