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Interactions of synapsin I with phospholipids: possible role in synaptic vesicle clustering and in the maintenance of bilayer structures

机译:突触素I与磷脂的相互作用:可能在突触囊泡群集和双层结构维护中的作用。

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摘要

Synapsin I is a synaptic vesicle-specific phosphoprotein composed of a globular and hydrophobic head and of a proline-rich, elongated and basic tail. Synapsin I binds with high affinity to phospholipid and protein components of synaptic vesicles. The head region of the protein has a very high surface activity, strongly interacts with acidic phospholipids and penetrates the hydrophobic core of the vesicle membrane. In the present paper, we have investigated the possible functional effects of the interaction between synapsin I and vesicle phospholipids. Synapsin I enhances both the rate and the extent of Ca(2+)-dependent membrane fusion, although it has no detectable fusogenic activity per se. This effect, which appears to be independent of synapsin I phosphorylation and localized to the head region of the protein, is attributable to aggregation of adjacent vesicles. The facilitation of Ca(2+)-induced liposome fusion is maximal at 50-80% of vesicle saturation and then decreases steeply, whereas vesicle aggregation does not show this biphasic behavior. Association of synapsin I with phospholipid bilayers does not induce membrane destabilization. Rather, 31P-nuclear magnetic resonance spectroscopy demonstrated that synapsin I inhibits the transition of membrane phospholipids from the bilayer (L alpha) to the inverted hexagonal (HII) phase induced either by increases in temperature or by Ca2+. These properties might contribute to the remarkable selectivity of the fusion of synaptic vesicles with the presynaptic plasma membrane during exocytosis.
机译:突触素I是一种突触小泡特异性磷酸化蛋白,由球形和疏水性头部以及富含脯氨酸,细长且基本的尾巴组成。突触素I以高亲和力与突触小泡的磷脂和蛋白质成分结合。蛋白质的头部区域具有很高的表面活性,可与酸性磷脂强烈相互作用并穿透囊泡膜的疏水核心。在本文中,我们研究了突触素I和囊泡磷脂相互作用的可能的功能作用。 Synapsin I增强Ca(2+)依赖的膜融合的速度和程度,尽管它本身没有可检测的融合活性。该作用似乎独立于突触蛋白I的磷酸化并定位在蛋白质的头部区域,可归因于相邻囊泡的聚集。 Ca(2+)诱导脂质体融合的促进作用最大的是囊泡饱和度的50-80%,然后急剧下降,而囊泡聚集并不显示这种双相行为。突触素I与磷脂双层的缔合不引起膜不稳定。相反,31P核磁共振波谱证明突触素I抑制了温度升高或Ca2 +引起的膜磷脂从双层(L alpha)到倒六边形(HII)相的转变。这些性质可能有助于胞吐过程中突触小泡与突触前质膜融合的显着选择性。

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