Horemans Nele, Potters Geert, De Wilde Leen, Caubergs Roland J
University of Antwerp, Department of Biology, Plant Physiology Groenenborgerlaan 171, B-2020 Antwerp, Belgium.
Plant Physiol. 2003 Sep;133(1):361-7. doi: 10.1104/pp.103.022673.
Recently, ascorbate (ASC) concentration and the activity of a number of enzymes from the ASC metabolism have been proven to correlate with differences in growth or cell cycle progression. Here, a possible correlation between growth and the activity of a plasma membrane dehydroascorbate (DHA) transporter was investigated. Protoplasts were isolated from a tobacco (Nicotiana tabacum) Bright Yellow-2 cell culture at different intervals after inoculation and the activity of DHA transport was tested with (14)C-labeled ASC. Ferricyanide (1 mM) or dithiothreitol (1 mM) was included in the test to keep the external (14)C-ASC in its oxidized respectively reduced form. Differential uptake activity was observed, correlating with growth phases of the cell culture. Uptake of DHA in cells showed a peak in exponential growth phase, whereas uptake in the presence of dithiothreitol did not. The enhanced DHA uptake was not due to higher endogenous ASC levels that are normally present in exponential phase because preloading of protoplasts of different ages did not affect DHA uptake. Preloading was achieved by incubating cells before protoplastation for 4 h in a medium supplemented with 1 mM DHA. In addition to testing cells at different growth phases, uptake of DHA into the cells was also followed during the cell cycle. An increase in uptake activity was observed during M phase and the M/G1 transition. These experiments are the first to show that DHA transport activity into plant cells differs with cell growth. The relevance of the data to the action of DHA and ASC in cell growth will be discussed.
最近,已证实抗坏血酸盐(ASC)浓度以及来自ASC代谢的多种酶的活性与生长差异或细胞周期进程相关。在此,研究了质膜脱氢抗坏血酸盐(DHA)转运体的活性与生长之间可能存在的相关性。在接种后的不同时间间隔,从烟草(Nicotiana tabacum)亮黄-2细胞培养物中分离原生质体,并用(14)C标记的ASC测试DHA转运活性。测试中加入铁氰化物(1 mM)或二硫苏糖醇(1 mM),以使外部的(14)C-ASC分别保持氧化态或还原态。观察到差异摄取活性,其与细胞培养物的生长阶段相关。细胞对DHA的摄取在指数生长期出现峰值,而在二硫苏糖醇存在下的摄取则没有。DHA摄取的增强并非由于指数期通常存在的较高内源性ASC水平,因为对不同年龄的原生质体进行预加载并不影响DHA摄取。预加载是通过在原生质体化之前将细胞在补充有1 mM DHA的培养基中孵育4小时来实现的。除了测试处于不同生长阶段的细胞外,还在细胞周期中跟踪了DHA进入细胞的摄取情况。在M期和M/G1转换期间观察到摄取活性增加。这些实验首次表明,植物细胞中DHA的转运活性随细胞生长而不同。将讨论这些数据与DHA和ASC在细胞生长中的作用的相关性。