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小鼠和鸡胃肠道中肠道几丁质酶mRNA的细胞表达

Cellular expression of gut chitinase mRNA in the gastrointestinal tract of mice and chickens.

作者信息

Suzuki Masako, Fujimoto Wakako, Goto Marie, Morimatsu Masami, Syuto Bunei, Iwanaga Toshihiko

机构信息

Department of Veterinary Medicine, Faculty of Agriculture, Iwate University, Morioka, Japan.

出版信息

J Histochem Cytochem. 2002 Aug;50(8):1081-9. doi: 10.1177/002215540205000810.

Abstract

Recently, the second mammalian chitinase, designated acidic mammalian chitinase (AMCase), has been identified in human, mouse, and cow. In contrast to the earlier identified macrophage-derived chitinase (chitotriosidase), this chitinase is richly expressed in the gastrointestinal (GI) tract, suggesting its role in digestion of chitin-containing foods as well as defense against chitin-coated microorganisms and parasites. This in situ hybridization study first revealed cellular localization of the gut-type chitinase in the mouse and chicken. In adult mice, the parotid gland, von Ebner's gland, and gastric chief cells, all of which are exocrine cells of the serous type, expressed the gut chitinase mRNA. In the chicken, oxyntico-peptic cells in glandular stomach (proventriculus) and hepatocytes expressed the chitinase mRNA. Because cattle produce the gut chitinase (chitin-binding protein b04) only in the liver, the gut chitinases in mammals and birds have three major sources of production, i.e., the salivary gland, stomach, and liver. During ontogenetic development, the expression level in the parotid gland and stomach of mice increased to the adult level before weaning, whereas in the stomach of chickens intense signals were detectable in embryos from incubation day 7.

摘要

最近,第二种哺乳动物几丁质酶,即酸性哺乳动物几丁质酶(AMCase),已在人类、小鼠和牛体内被鉴定出来。与早期发现的巨噬细胞衍生几丁质酶(壳三糖酶)不同,这种几丁质酶在胃肠道(GI)中大量表达,这表明它在含几丁质食物的消化以及抵御被几丁质包裹的微生物和寄生虫方面发挥作用。这项原位杂交研究首次揭示了肠道型几丁质酶在小鼠和鸡体内的细胞定位。在成年小鼠中,腮腺、埃伯内氏腺和胃主细胞,这些都是浆液型外分泌细胞,表达肠道几丁质酶mRNA。在鸡体内,腺胃(前胃)中的泌酸-胃蛋白酶细胞和肝细胞表达几丁质酶mRNA。由于牛只在肝脏中产生肠道几丁质酶(几丁质结合蛋白b04),哺乳动物和鸟类的肠道几丁质酶有三个主要产生来源,即唾液腺、胃和肝脏。在个体发育过程中,小鼠腮腺和胃中的表达水平在断奶前增加到成年水平,而在鸡的胃中,从孵化第7天的胚胎中就可检测到强烈信号。

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