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小鼠胎儿小肠中葡萄糖-6-磷酸酶活性的发育模式。

Developmental pattern of glucose-6-phosphatase activity in the small intestine of the mouse fetus.

作者信息

Calvert R, Malka D, Ménard D

出版信息

Histochemistry. 1979 Sep;63(2):209-220. doi: 10.1007/BF00644543.

Abstract

The distribution of glucose-6-phosphatase (G6Pase) activity in the epithelium of the small intestine in mouse embryos (the last 4 days of gestation) was studied by electron microscope cytochemistry and by enzymatic assays. At 16 days, the lead phosphate deposited by the cytochemical reaction is localized on the rough endoplasmic reticulum (RER) and nuclear envelope of very few cells in the duodenum and jejunum. Positive cells are more frequently seen in the upper part of the developing villi. At 17 days of gestation, a tremendous burst in RER differentiation is noticed in all parts of the small intestine and concomitantly glycogen disappears. At 18 days of gestation all the principal cells of the intestinal mucosa show a well differentiated positive RER and the enzyme is also present in the smooth endoplasmic reticulum. Biochemically, G6Pase activity is detected in the proximal 2 thirds of the small intestine at 17 days of gestation and appears at 18 days in the last third. Afterwards the activity increases up until birth. These results suggest (1) that the endoplasmic reticulum differentiates very late in the intestinal mucosa of mouse embryos (2) that the differentiation with respect to G6Pase is asynchronous between the enterocytes, (3) that for a given cell all the cisternae of RER are involved in G6Pase synthesis at the same moment and (4) that the enterocytes of the duodenum differentiate sooner and faster that those of the jejunum and ileum.

摘要

通过电子显微镜细胞化学和酶活性测定,研究了小鼠胚胎(妊娠最后4天)小肠上皮中葡萄糖-6-磷酸酶(G6Pase)活性的分布。在第16天,细胞化学反应沉积的磷酸铅定位于十二指肠和空肠中极少数细胞的粗面内质网(RER)和核膜上。在发育中的绒毛上部更常看到阳性细胞。在妊娠第17天,小肠各部位均出现RER分化的巨大爆发,同时糖原消失。在妊娠第18天,肠黏膜的所有主细胞均显示出分化良好的阳性RER,该酶也存在于滑面内质网中。生化分析表明,妊娠第17天在小肠近端三分之二处检测到G6Pase活性,第18天在最后三分之一处出现。此后,活性一直增加直至出生。这些结果表明:(1)内质网在小鼠胚胎肠黏膜中分化非常晚;(2)肠上皮细胞中G6Pase的分化是不同步的;(3)对于给定的细胞,RER的所有池同时参与G6Pase的合成;(4)十二指肠的肠上皮细胞比空肠和回肠的分化更早、更快。

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