Robertson R T, Yu B P, Liu H H, Liu N H, Kageyama G H
Department of Anatomy and Neurobiology, College of Medicine, University of California, Irvine 92717.
Exp Neurol. 1991 Dec;114(3):330-42. doi: 10.1016/0014-4886(91)90159-a.
Patterns of "nonspecific" cholinesterase (ChE) and acetylcholinesterase (AChE) activity were studied in developing rat cerebellar cortex by enzyme histochemistry and light and electron microscopy. Three types of ChE histochemical reaction product were observed in cerebellar cortex: (i) ChE is found in capillary endothelium throughout the cerebellum. Capillary ChE staining is present by the time of birth and continues into adulthood. (ii) ChE is found in radial glial fibers and their parent cell bodies, the Golgi epithelial cells. Radial glial fiber staining is mot intense during the first 3 weeks of postnatal life. (iii) ChE is found in Purkinje cells of the nodulus and ventral uvula. No ChE staining of Purkinje cells was seen in other parts of the cerebellum. ChE staining of Purkinje cells appears to be transient, first appearing at Postnatal Day 2 (P2), reaching peak intensity at P7-9, and decreasing to adult levels by P16. AChE activity displays a pattern markedly different from ChE, with staining in deep cerebellar nuclei, in putative mossy fiber terminals, and in Golgi neurons of cerebellar cortex. No evidence was found for transient AChE staining in Purkinje cells in any part of the cerebellum. The function of transiently expressed ChE activity in developing Purkinje neurons is unknown, but may be related to reorganization of cerebellar cortical circuitry associated with growth of mossy fiber afferents.
通过酶组织化学以及光学和电子显微镜技术,研究了发育中的大鼠小脑皮质中“非特异性”胆碱酯酶(ChE)和乙酰胆碱酯酶(AChE)的活性模式。在小脑皮质中观察到三种类型的ChE组织化学反应产物:(i)ChE存在于整个小脑的毛细血管内皮中。出生时即可见到毛细血管ChE染色,并持续至成年期。(ii)ChE存在于放射状胶质纤维及其母细胞体,即高尔基上皮细胞中。放射状胶质纤维染色在出生后前3周最为强烈。(iii)ChE存在于小结和腹侧蚓垂的浦肯野细胞中。在小脑的其他部位未见浦肯野细胞的ChE染色。浦肯野细胞的ChE染色似乎是短暂的,首先在出生后第2天(P2)出现,在P7 - 9达到峰值强度,并在P16时降至成年水平。AChE活性表现出与ChE明显不同的模式,在小脑深部核团、假定的苔藓纤维终末以及小脑皮质的高尔基神经元中有染色。在小脑任何部位的浦肯野细胞中均未发现短暂的AChE染色证据。发育中的浦肯野神经元中短暂表达的ChE活性的功能尚不清楚,但可能与苔藓纤维传入生长相关的小脑皮质回路重组有关。