首页> 美国卫生研究院文献>The Journal of Physiology >Kinetic analysis of the phosphorylation-dependent interactions of synapsin I with rat brain synaptic vesicles.
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Kinetic analysis of the phosphorylation-dependent interactions of synapsin I with rat brain synaptic vesicles.

机译:突触素I与大鼠脑突触小泡的磷酸化依赖性相互作用的动力学分析。

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摘要

1. Synapsin I, a major synaptic vesicle (SV)-associated phosphoprotein, is involved in the regulation of neurotransmitter release and synapse formation. By binding to both phospholipid and protein components of SV with high affinity and in a phosphorylation-dependent fashion, synapsin I is believed to cluster SV and to attach them to the actin-based cytoskeleton of the nerve terminal. 2. In the present study we have investigated the kinetic aspects of synapsin I-SV interactions and the mechanisms of their modulation by ionic strength and site-specific phosphorylation, using fluorescence resonance energy transfer between suitable fluorophores linked to synapsin I and to the membrane bilayer. 3. The binding of synapsin I to the phospholipid and protein components of SV has fast kinetics: mean time constants ranged between 1 and 4 s for association and 9 and 11's for ionic strength-induced dissociation at 20 degrees C. The interaction with the phospholipid component consists predominantly of a hydrophobic binding with the core of the membrane which may account for the membrane stabilizing effect of synapsin I. 4. Phosphorylation of synapsin I by either SV-associated or purified exogenous Ca2+/calmodulin-dependent protein kinase II (CaMPKII) inhibited the association rate and the binding to SV at steady state by acting on the ionic strength-sensitive component of the binding. When dephosphorylated synapsin I was previously bound to SV, exposure of SV to Ca2+/calmodulin in the presence of ATP triggered a prompt dissociation of synapsin I with a time constant similar to that of ionic strength-induced dissociation. 5. In conclusion, the reversible interactions between synapsin I and SV are highly regulated by site-specific phosphorylation and have kinetics of the same order of magnitude as the kinetics of SV recycling determined in mammalian neurons under comparable temperature conditions. These findings are consistent with the hypothesis that synapsin I associates with, and dissociates from, SV during the exo-endocytotic cycle. The on-vesicle phosphorylation of synapsin I by the SV-associated CaMPKII, and the subsequent dissociation of the protein from the vesicle membrane, though not involved in mediating exocytosis of primed vesicles evoked by a single stimulus, may represent a prompt and efficient mechanism for the modulation of neurotransmitter release and presynaptic plasticity.
机译:1. Synapsin I是一种主要的突触小泡(SV)相关的磷蛋白,参与神经递质释放和突触形成的调节。通过以高亲和力并以磷酸化依赖性方式与SV的磷脂和蛋白质组分结合,突触素I被认为使SV成簇并且将它们附着至神经末梢的基于肌动蛋白的细胞骨架。 2.在本研究中,我们使用了与突触素I和膜双层相连的合适荧光团之间的荧光共振能量转移,研究了突触素I-SV相互作用的动力学方面以及它们通过离子强度和位点特异性磷酸化进行调节的机制。 。 3.突触蛋白I与SV的磷脂和蛋白质组分的结合具有快速的动力学:在20℃下,平均时间常数的缔合时间为1至4s,离子强度诱导的解离的平均时间常数为9至11。与磷脂的相互作用组分主要由与膜核心的疏水结合组成,这可能说明突触素I的膜稳定作用。4.突触素I被SV相关或纯化的外源Ca2 + /钙调蛋白依赖性蛋白激酶II(CaMPKII)磷酸化通过作用于结合的离子强度敏感成分,可抑制缔合速率和稳态下与SV的结合。当去磷酸化的突触素I先前与SV结合时,在ATP存在下SV暴露于Ca2 + /钙调蛋白会触发突触素I迅速解离,其时间常数类似于离子强度诱导的解离。 5.总而言之,突触素I和SV之间的可逆相互作用受到位点特异性磷酸化的高度调节,并且具有与哺乳动物神经元在相当的温度条件下确定的SV循环动力学相同数量级的动力学。这些发现与突触素I在胞外-胞吞周期中与SV缔合和解离的假说相符。 SV相关的CaMPKII对突触蛋白I的囊泡磷酸化作用,以及随后的蛋白质从囊泡膜的解离,尽管不涉及通过单一刺激引起的引发的囊泡的胞吐作用,但可能代表了一种快速有效的机制调节神经递质释放和突触前可塑性。

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