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突触5'-核苷酸酶具有短暂性,且在大鼠小脑出生后发育过程中指示攀缘纤维可塑性。

Synaptic 5'-nucleotidase is transient and indicative of climbing fiber plasticity during the postnatal development of rat cerebellum.

作者信息

Schoen S W, Graeber M B, Tóth L, Kreutzberg G W

机构信息

Department of Neuromorphology, Max-Planck-Institute for Psychiatry, Martinsried n. Munich, F.R.G.

出版信息

Brain Res Dev Brain Res. 1991 Jul 16;61(1):125-38. doi: 10.1016/0165-3806(91)90122-y.

Abstract

The transient appearance of 5'-nucleotidase, an adenosine-producing ecto-enzyme, was studied during specific stages of postnatal synaptogenesis in the rat cerebellum. For ultrastructural detection of 5'-nucleotidase activity, an enzyme-cytochemical technique was used. Between postnatal days 4 and 6, enzymatic reaction product was present in the synaptic clefts of climbing fibers containing the perisomatic spines, apical cones and emerging dendrites of Purkinje cells (CF-PC synapses). Labeled parallel fiber synapses were observed on dendritic shafts of cerebellar interneurons. At postnatal days 9 and 12, enzyme-positive parallel fiber terminals were in addition numerous on the spines of peripheral Purkinje branchlets, and gradually disappeared thereafter. Between postnatal days 8 and 15, labeling of perisomatic CF-PC contacts persisted. In contrast, climbing fiber synapses on Purkinje dendrites were only occasionally labeled. Between postnatal days 18 and 21, synaptic reaction product was restricted to mossy fibers. At the same time, association of 5'-nucleotidase with glial profiles was prominent throughout the cerebellar layers. In adult cerebellum (from 24 days onwards) all synapses were devoid of enzymatic activity. Throughout development, basket, stellate and Golgi cell synapses were devoid of enzymatic activity. We conclude that 5'-nucleotidase is present in excitatory cerebellar synapses during part of their generation period. The transient nature of this phenomenon suggests that 5'-nucleotidase may serve as a novel, cytochemical marker for a specific state of synaptic maturation, and in particular for climbing fiber plasticity. A role of 5'-nucleotidase in purinergic neuromodulation and cellular contact formation could be significant in these processes.

摘要

在大鼠小脑出生后突触形成的特定阶段,研究了一种产生腺苷的胞外酶——5'-核苷酸酶的短暂出现情况。为了通过超微结构检测5'-核苷酸酶活性,采用了酶细胞化学技术。在出生后第4天至第6天之间,酶反应产物出现在含有浦肯野细胞体周棘、顶锥和新生树突的攀缘纤维的突触间隙中(攀缘纤维-浦肯野细胞突触)。在小脑中间神经元的树突轴上观察到标记的平行纤维突触。在出生后第9天和第12天,此外,酶阳性的平行纤维终末在周边浦肯野小分支的棘上大量存在,此后逐渐消失。在出生后第8天至第15天之间,体周攀缘纤维-浦肯野细胞接触的标记持续存在。相比之下,浦肯野树突上的攀缘纤维突触只是偶尔被标记。在出生后第18天至第21天之间,突触反应产物局限于苔藓纤维。与此同时,在整个小脑层中,5'-核苷酸酶与神经胶质细胞形态的关联很突出。在成年小脑(从出生后24天起),所有突触都没有酶活性。在整个发育过程中,篮状细胞、星状细胞和高尔基细胞突触都没有酶活性。我们得出结论,5'-核苷酸酶在兴奋性小脑突触生成期的部分时间存在。这种现象的短暂性质表明,5'-核苷酸酶可能作为一种新的细胞化学标记物,用于特定的突触成熟状态,特别是用于攀缘纤维可塑性。5'-核苷酸酶在嘌呤能神经调节和细胞接触形成中的作用在这些过程中可能很重要。

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