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斑点海兔和苹果螺中的突触结合蛋白样分子:在神经系统中的鉴定与分布以及体外突触接触形成过程中的情况

Synapsin-like molecules in Aplysia punctata and Helix pomatia: identification and distribution in the nervous system and during the formation of synaptic contacts in vitro.

作者信息

Cibelli G, Ghirardi M, Onofri F, Casadio A, Benfenati F, Montarolo P G, Vitiello F

机构信息

Istituto di Fisiologia Umana, Università di Bari, Italy.

出版信息

Eur J Neurosci. 1996 Dec;8(12):2530-43. doi: 10.1111/j.1460-9568.1996.tb01547.x.

Abstract

The distribution and biochemical features of the synapsin-like peptides recognized in Aplysia and Helix by various antibodies directed against mammalian synapsins were studied. The peptides can be extracted at low pH and are digested by collagenase; further, they can be phosphorylated by both protein kinase A and Ca2+/calmodulin-dependent protein kinase II. In the ganglia of both snails, they are associated with the soma of most neurons and with the neuropil; punctate immunostaining is present along the neurites. Using cocultures of a Helix serotoninergic neuron and of its target cell, we analysed the redistribution of the synapsin-like peptides during the formation of active synaptic contacts. When the presynaptic neuron is plated in isolation, both synapsin and serotonin immunoreactivities are restricted to the distal axonal segments and to the growth cones; in the presence of the target, the formation of a chemical connection is accompanied by redistribution of the synapsin and serotonin immunoreactivities that concentrate in highly fluorescent round spots scattered along the newly grown neurites located close to the target cell. Almost every spot that is stained for serotonin is also positive for synapsin. In the presynaptic cell plated alone, the number of these varicosity-like structures is substantially stable throughout the whole period; by contrast, when the presynaptic cell synapses the target, their number increases progressively parallel to the increase in the mean amplitude of cumulative excitatory postsynaptic potentials recorded at the same times. The data indicate that mollusc synapsin-like peptides to some extent resemble their mammalian homologues, although they are not exclusively localized in nerve terminals and their expression strongly correlates with the formation of active synaptic contacts.

摘要

我们研究了针对哺乳动物突触结合蛋白的各种抗体在海兔和蜗牛中识别出的类突触结合蛋白肽的分布及生化特性。这些肽可在低pH值下提取,并可被胶原酶消化;此外,它们可被蛋白激酶A和钙/钙调蛋白依赖性蛋白激酶II磷酸化。在这两种蜗牛的神经节中,它们与大多数神经元的胞体以及神经纤维网相关联;神经突上存在点状免疫染色。利用蜗牛5-羟色胺能神经元与其靶细胞的共培养,我们分析了类突触结合蛋白肽在活跃突触接触形成过程中的重新分布。当将突触前神经元单独培养时,突触结合蛋白和5-羟色胺免疫反应性都局限于轴突远端和生长锥;在有靶细胞存在的情况下,化学连接的形成伴随着突触结合蛋白和5-羟色胺免疫反应性的重新分布,这些反应性集中在沿靠近靶细胞的新生长神经突散布的高荧光圆形斑点中。几乎每个被5-羟色胺染色的斑点对突触结合蛋白也呈阳性。在单独培养的突触前细胞中,这些曲张样结构的数量在整个时期基本稳定;相比之下,当突触前细胞与靶细胞形成突触时,它们的数量随着同时记录的累积兴奋性突触后电位平均幅度的增加而逐渐增加。数据表明,软体动物类突触结合蛋白肽在一定程度上类似于它们的哺乳动物同源物,尽管它们并非仅局限于神经末梢,并且它们的表达与活跃突触接触的形成密切相关。

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