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The synaptic vesicle protein synaptophysin: purification and characterization of its channel activity.

机译:突触小泡蛋白突触素:其通道活性的纯化和表征。

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摘要

The synaptic vesicle protein synaptophysin was solubilized from rat brain synaptosomes with a relatively low concentration of Triton X-100 (0.2%) and was highly purified (above 95%) using a rapid single chromatography step on hydroxyapatite/celite resin. Purified synaptophysin was reconstituted into a planar lipid bilayer and the channel activity of synaptophysin was characterized. In asymmetric KCl solutions (cis 300 mM/trans 100 mM), synaptophysin formed a fast-fluctuating channel with a conductance of 414 +/- 13 pS at +60 mV. The open probability of synaptophysin channels was decreased upon depolarization, and channels were found to be cation-selective. Synaptophysin channels showed higher selectivity for K(+) over Cl(-) (P(K(+))/P(Cl(-)) > 8) and preferred K(+) over Li(+), Na(+), Rb(+), Cs(+), or choline(+). The synaptophysin channel is impermeable to Ca(2+), which has no effect on its channel activity. This study is the second demonstration of purified synaptophysin channel activity, but the first biophysical characterization of its channel properties. The availability of large amounts of purified synaptophysin and of its characteristic channel properties might help to establish the role of synaptophysin in synaptic transmission.
机译:突触小泡蛋白突触素从具有相对较低浓度的Triton X-100(0.2%)的大鼠脑突触小体中溶解,并使用羟基磷灰石/硅藻土树脂上的快速单色谱步骤进行了高度纯化(95%以上)。纯化的突触素重构为平面脂质双层,并表征突触素的通道活性。在非对称KCl溶液(顺式300 mM /反式100 mM)中,突触素形成了一个快速波动的通道,在+60 mV时电导为414 +/- 13 pS。去极化时,突触素通道的开放概率降低,并且发现通道是阳离子选择性的。突触素通道对K(+)的选择性高于Cl(-)(P(K(+))/ P(Cl(-))> 8),而对K(+)的选择性优于Li(+),Na(+) ,Rb(+),Cs(+)或胆碱(+)。突触通道不是Ca(2+),这对其通道的活动没有影响。这项研究是纯化的突触素通道活性的第二次展示,但其通道特性的首次生物物理表征。大量纯化的突触素的可利用性及其特征性的通道特性可能有助于确立突触素在突触传递中的作用。

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