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小脑巨大谷氨酸能突触处的传递特性:苔藓纤维-单极刷状细胞突触

Properties of transmission at a giant glutamatergic synapse in cerebellum: the mossy fiber-unipolar brush cell synapse.

作者信息

Rossi D J, Alford S, Mugnaini E, Slater N T

机构信息

Department of Physiology, Northwestern University Medical School, Chicago, Illinois 60611, USA.

出版信息

J Neurophysiol. 1995 Jul;74(1):24-42. doi: 10.1152/jn.1995.74.1.24.

DOI:10.1152/jn.1995.74.1.24
PMID:7472327
Abstract
  1. The synaptic activation by mossy fibers (MFs) of unipolar brush cells (UBCs) in the vestibular cerebellum (nodulus and uvula) was examined using patch-clamp recording methods in thin, rat cerebellar slices with Lucifer yellow-filled pipettes for subsequent fluorescence microscopic verification of the cell morphology. 2. UBCs were distinguished from adjacent granule cells in thin cerebellar slices in the uvula and nodulus regions by their larger soma diameters and short dendritic brush, greater whole-cell capacitance, and a prolonged, biphasic excitatory postsynaptic current (EPSC) to stimulation of MFs. 3. Thin-section transmission electron micrographs of the MF-UBC synapse displayed an unusually extensive area of synaptic apposition estimated to measure 12-40 microns2. The majority of UBCs was innervated by a single MF. At high magnification, individual clusters of presynaptic vesicles could be discerned, separated by regions of presynaptic membrane lacking vesicles, but apposed to continuous regions of postsynaptic density. Thus, after release, transmitter diffusion from the synaptic cleft must traverse considerable stretches of postsynaptic membrane before escape into extracellular space. In contrast, MF-granule cell synapses in these cerebellar regions resembled glutamate synapses in other brain regions in that the total synaptic area measured < or = 4 microns2. These synaptic junctions were flanked by short stretches of unspecialized plasma membrane, providing a short (0.5 micron) diffusional path from the site of neurotransmitter release to a branch point of the extracellular space. 4. The MF-evoked EPSC in UBCs was composed of a fast (10-90% rise time: 0.70 ms) and slow (10-90% rise time: 395 ms; 10-90% decay time: 3.1 s) component. The fast component was blocked by the alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid/kainate (AMPA/KA) antagonist 6-cyano-7-nitroquinoxaline-2,3-dione (10 microM) and displayed linear current-voltage (I-V) relations in the presence or absence of external magnesium. 5. The slow EPSC was also mediated by glutamate receptors, but in most neurons both AMPA/KA and N-methyl-D-aspartate (NMDA) receptors contributed to the slow EPSC, with the contribution of NMDA receptors predominating in the majority of cells. Consequently, although all cells displayed linear I-V relations in Mg(2+)-free saline, cells in which the slow EPSC was predominently mediated by NMDA receptors exhibited voltage-dependent rectification in the presence of external Mg2+ (1 mM). 6. With increasing postnatal age (10-30 d), the contribution made to the slow EPSC by NMDA receptors declined, with a reciprocal increase in the contribution being made by AMPA/KA receptors.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在前庭小脑(小结和蚓垂)中,使用膜片钳记录方法,在薄的大鼠小脑切片中,用填充了路西法黄的移液管检测单极刷细胞(UBC)的苔藓纤维(MF)引发的突触激活,随后通过荧光显微镜验证细胞形态。2. 在蚓垂和小结区域的薄小脑切片中,UBC与相邻的颗粒细胞不同,其胞体直径更大、有短树突刷、全细胞电容更大,并且对MF刺激有延长的双相兴奋性突触后电流(EPSC)。3. MF - UBC突触的超薄切片透射电子显微镜图像显示,突触并置的区域异常广泛,估计面积为12 - 40平方微米。大多数UBC由单个MF支配。在高倍放大下,可以辨别出单个突触前囊泡簇,被缺乏囊泡的突触前膜区域隔开,但与突触后致密区的连续区域并置。因此,释放后,神经递质从突触间隙扩散必须穿过相当长的突触后膜段才能逸出到细胞外空间。相比之下,这些小脑区域的MF - 颗粒细胞突触类似于其他脑区的谷氨酸突触,其总突触面积测量值≤4平方微米。这些突触连接两侧是短段未特化的质膜,从神经递质释放部位到细胞外空间分支点提供了短(0.5微米)的扩散路径。4. UBC中MF诱发的EPSC由快速成分(10 - 90%上升时间:0.70毫秒)和慢速成分(10 - 90%上升时间:395毫秒;10 - 90%衰减时间:3.1秒)组成。快速成分被α - 氨基 - 3 - 羟基 - 5 - 甲基 - 4 - 异恶唑丙酸/海人酸(AMPA/KA)拮抗剂6 - 氰基 - 7 - 硝基喹喔啉 - 2,3 - 二酮(10微摩尔)阻断,并且在有或没有细胞外镁的情况下显示线性电流 - 电压(I - V)关系。5. 慢速EPSC也由谷氨酸受体介导,但在大多数神经元中,AMPA/KA和N - 甲基 - D - 天冬氨酸(NMDA)受体都对慢速EPSC有贡献,在大多数细胞中NMDA受体的贡献占主导。因此,尽管所有细胞在无镁盐溶液中都显示线性I - V关系,但慢速EPSC主要由NMDA受体介导的细胞在存在细胞外镁离子(1毫摩尔)时表现出电压依赖性整流。6. 随着出生后年龄增加(10 - 30天),NMDA受体对慢速EPSC的贡献下降,AMPA/KA受体的贡献相应增加。(摘要截断于400字)

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