Brodelius P, Vogel H J
J Biol Chem. 1985 Mar 25;260(6):3556-60.
High resolution 31P NMR spectra (103.2 MHz) of oxygenated Catharanthus roseus and Daucus carota cells grown in suspension cultures were obtained using a solenoidal perfusion probe. The spectra showed resonances for various phosphorylated metabolites such as ATP, ADP, NAD(P)(H), nucleoside diphosphoglucose, and sugar phosphates. The relative levels of the phosphorylated metabolites remained constant throughout the growth curve. No resonances for storage compounds such as polyphosphates, pyrophosphate, or phytates were observed. Two resolved resonances for Pi indicated an intracellular pH of 7.3 and 5.7 (or below) for the cytoplasm and vacuoles, respectively. The time course of Pi uptake and storage during growth in fresh culture medium was followed by studying the level of vacuolar Pi with 31P NMR (145.7 MHz). Simultaneously, the level of Pi in the culture medium was followed with radioactive 32P. C. roseus quickly takes up all the Pi from the culture medium (maximum rate 1.7 mumol min-1 g-1 (dry weight of cells]. The Pi is first stored in the vacuoles; subsequently, one part of this pool is used to keep a constant cytoplasmic Pi level while another part is apparently accumulated as an NMR invisible Pi store, probably in another cell organelle. In contrast, D. carota does not accumulate Pi in the vacuoles and consequently it takes up Pi from the medium at a much slower rate (0.05 mumol min-1 g-1 (dry weight of cells].
使用螺线管灌注探头获得了在悬浮培养中生长的长春花和胡萝卜细胞的高分辨率31P NMR光谱(103.2 MHz)。光谱显示了各种磷酸化代谢物的共振峰,如ATP、ADP、NAD(P)(H)、核苷二磷酸葡萄糖和糖磷酸盐。在整个生长曲线中,磷酸化代谢物的相对水平保持恒定。未观察到储存化合物如多磷酸盐、焦磷酸盐或肌醇六磷酸的共振峰。Pi的两个分辨共振峰分别表明细胞质和液泡的细胞内pH值为7.3和5.7(或更低)。通过用31P NMR(145.7 MHz)研究液泡Pi的水平,跟踪了在新鲜培养基中生长期间Pi摄取和储存的时间进程。同时,用放射性32P跟踪培养基中Pi的水平。长春花迅速从培养基中摄取所有的Pi(最大速率为1.7 μmol min-1 g-1(细胞干重))。Pi首先储存在液泡中;随后,该池的一部分用于维持细胞质Pi水平恒定,而另一部分显然作为NMR不可见的Pi储存积累,可能在另一个细胞器中。相比之下,胡萝卜不在液泡中积累Pi,因此它从培养基中摄取Pi的速度要慢得多(0.05 μmol min-1 g-1(细胞干重))。