Pitari G, D'Andrea G, Salucci M L, Rossi A, Avigliano L
Department of Applied and Basic Biology, University of L'Aquila, Italy.
Glycoconj J. 1998 Aug;15(8):777-82. doi: 10.1023/a:1006943412709.
Ascorbate oxidase activity and immunoreactivity were evaluated in crude tissue extracts obtained from callus cell cultures induced by green zucchini sarcocarp and grown in the presence of tunicamycin, a powerful N-glycosylation inhibitor. Tunicamycin at 2 or 4 microg ml(-1) blocked cell growth within a couple of weeks, although a sustained cell viability was observed in the same period. A significant inhibition of total protein synthesis was observed at 10 and 15 days of culture time, with a decrease of 30% and 43% respectively when cells were grown in the presence of 2 microg ml(-1) tunicamycin, and of 48% and 57% respectively when the tunicamycin concentration was 4 microg ml(-1). After the same culture times ascorbate oxidase specific activity assayed in crude tissue extracts showed increases of about 1.9-fold and 3.5-fold (10 days) and 1.7-fold and 3.1-fold (15 days) at 2 and 4 microg ml(-1) tunicamycin, respectively. Ascorbate oxidase mRNA levels, however, did not appreciably differ between control and treated samples, measured at the same growing times. Lectin-blot, based on the use of concanavalin A, indicated a marked decrease of glycosylated proteins in tunicamycin-treated cultures. As judged by immunoblot, anti-native ascorbate oxidase antibodies scarcely recognized the enzyme expressed in tunicamycin-treated cells; on the contrary, anti-deglycosylated ascorbate oxidase antibodies were more reactive to the enzyme expressed in tunicamycin-treated cultures.
在由绿皮西葫芦果肉诱导产生并在衣霉素(一种强大的N-糖基化抑制剂)存在下生长的愈伤组织细胞培养物的粗提物中,评估了抗坏血酸氧化酶活性和免疫反应性。2或4微克/毫升的衣霉素在几周内阻断了细胞生长,尽管在此期间观察到细胞活力持续存在。在培养10天和15天时观察到总蛋白合成受到显著抑制,当细胞在2微克/毫升衣霉素存在下生长时,分别下降了30%和43%,当衣霉素浓度为4微克/毫升时,分别下降了48%和57%。在相同的培养时间后,在粗提物中测定的抗坏血酸氧化酶比活性在2微克/毫升和4微克/毫升衣霉素处理下分别显示出约1.9倍和3.5倍(10天)以及1.7倍和3.1倍(15天)的增加。然而,在相同生长时间测量时,对照样品和处理样品之间的抗坏血酸氧化酶mRNA水平没有明显差异。基于伴刀豆球蛋白A的凝集素印迹表明,衣霉素处理的培养物中糖基化蛋白显著减少。通过免疫印迹判断,抗天然抗坏血酸氧化酶抗体几乎不能识别衣霉素处理细胞中表达的酶;相反,抗去糖基化抗坏血酸氧化酶抗体对衣霉素处理培养物中表达的酶反应更强。