Department of Biology, Faculty of Science, Osaka University, Machikaneyama 1-1, Toyonaka, Osaka 560, Japan.
Plant Physiol. 1992 Oct;100(2):740-8. doi: 10.1104/pp.100.2.740.
In suspension-cultured tobacco (Nicotiana tabacum) cells, we have often encountered cold-stable microtubules (MTs). The cold-stable MTs were found in the pelleted fraction of tobacco cell homogenates. These cold-stable MTs were shown to be accompanied by unidentified filamentous structures that extended along part of their length. However, during the early hours in culture such cold-stable MTs were never observed. They were detectable from 120 h after the beginning of subculture and then their numbers increased gradually. The number of cells with cold-stable MTs eventually accounted for more than 95% of the total population of cells at the stationary phase of culture. The rapid loss of cold stability of MTs occurred when such cells were transferred to fresh medium for subculture. However, if the fresh medium was supplemented with once-used medium, the cold stability of MTs was retained. The active agent in the medium appeared to be of low molecular weight and to be heat resistant. A similar activity was detected in a pectin hydrolyzate. When an inhibitor of protein kinase, either 6-dimethylaminopurine or staurosporin, was added to the cells at an early stage of culture, when cold-stable MTs were normally completely absent, most cells acquired cold-stable MTs. It appears that acquisition or loss of cold stability of MTs in tobacco cells is regulated by the action of a kinase/phosphatase or a phosphorylation/dephosphorylation system on some MT protein(s), such as a cold stabilizer of MTs, some unidentified MT-associated filamentous structure, or even tubulin itself.
在悬浮培养的烟草(Nicotiana tabacum)细胞中,我们经常遇到冷稳定微管(MTs)。冷稳定 MTs 存在于烟草细胞匀浆的沉淀部分。这些冷稳定 MTs 被证明伴随着未鉴定的丝状结构,这些结构沿着它们的一部分长度延伸。然而,在培养的早期阶段从未观察到这种冷稳定 MTs。它们可以在继代培养开始后的 120 小时检测到,然后它们的数量逐渐增加。具有冷稳定 MTs 的细胞数量最终占培养静止期细胞总数的 95%以上。当这些细胞被转移到新鲜培养基中进行继代培养时,MTs 的冷稳定性迅速丧失。然而,如果新鲜培养基中补充了一次使用的培养基,则 MTs 的冷稳定性得以保留。培养基中的活性物质似乎是低分子量的,并且耐热。在果胶水解物中也检测到类似的活性。当在培养的早期阶段向细胞中添加蛋白激酶抑制剂 6-二甲基氨基嘌呤或星形孢菌素时,通常完全不存在冷稳定 MTs 的情况下,大多数细胞获得了冷稳定 MTs。看来,烟草细胞中 MTs 的冷稳定性的获得或丧失是由某种 MT 蛋白(如 MT 的冷稳定剂、一些未鉴定的 MT 相关丝状结构,甚至微管蛋白本身)上的激酶/磷酸酶或磷酸化/去磷酸化系统的作用调节的。