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长春花生物碱在组织培养细胞中人工诱导的多形性微管蛋白副晶体的不稳定性。

Instability of pleomorphic tubulin paracrystals artificially induced by Vinca alkaloids in tissue-cultured cells.

作者信息

Takanari H, Yosida T, Morita J, Izutsu K, Ito T

机构信息

Department of Pathology, Mie University School of Medicine, Japan.

出版信息

Biol Cell. 1990;70(1-2):83-90. doi: 10.1016/0248-4900(90)90363-8.

Abstract

The processes of tubulin paracrystal induction in Chinese hamster ovary cells treated with a Vinca alkaloid, ie, vinblastine or vincristine, and treated simultaneously with one of the Vinca alkaloids and colcemid or colchicine were followed by four different microscopic techniques, in particular by tubulin-immunofluorescence. Vinca alkaloid alone, in lower concentrations, induced basically tactoid or needle-shaped (N-shaped) paracrystals. However, the formation of crystalloid was greatly enhanced by increasing the concentration of Vinca alkaloid. Square or barrel-shaped (S-shaped) and hexagonal paracrystals were also commonly induced by simultaneous treatment with a Vinca alkaloid and colcemid or colchicine. Large rectangular paracrystals often displayed fibrillar or lamellar fine structures which ran perpendicular to the long axis but tended to cleave into fragments by spontaneous splitting. Electron micrographs revealed the fine structure of crystalloids to be aggregates of numerous filaments. The growth of paracrystals, particularly N-shaped crystals, was markedly inhibited when cells were exposed to drug(s) at a low temperature (4 degrees C). We confirmed that both N- and S-shaped paracrystals dissociated rapidly after the culture medium was replaced with fresh, drug-free medium. Glutaraldehyde-fixed paracrystals treated with RNase solution were stained with acridine orange, showing a weak orange color. Possible factors involved in the assembly and disassembly of tubulin paracrystals are discussed.

摘要

在用长春花生物碱(即长春碱或长春新碱)处理的中国仓鼠卵巢细胞中,以及在用长春花生物碱之一与秋水仙酰胺或秋水仙碱同时处理的细胞中,通过四种不同的显微镜技术,特别是通过微管蛋白免疫荧光技术,追踪微管蛋白副晶体的诱导过程。单独使用较低浓度的长春花生物碱基本上诱导形成触觉样或针状(N形)副晶体。然而,通过增加长春花生物碱的浓度,类晶体的形成大大增强。同时用长春花生物碱与秋水仙酰胺或秋水仙碱处理通常也会诱导形成方形或桶状(S形)以及六边形副晶体。大型矩形副晶体常常显示出与长轴垂直的纤维状或层状精细结构,但倾向于通过自发分裂裂解成碎片。电子显微镜照片显示类晶体的精细结构是众多细丝的聚集体。当细胞在低温(4℃)下接触药物时,副晶体的生长,特别是N形晶体的生长,受到明显抑制。我们证实,在用新鲜的、不含药物的培养基替换培养基后,N形和S形副晶体都迅速解离。用核糖核酸酶溶液处理的经戊二醛固定的副晶体用吖啶橙染色,呈现出微弱的橙色。文中讨论了参与微管蛋白副晶体组装和解聚的可能因素。

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