Bligny R, Foray M F, Roby C, Douce R
Laboratoire de Physiologie Cellulaire Végétale, Centre d'Etudes Nucléaires, Grenoble, France.
J Biol Chem. 1989 Mar 25;264(9):4888-95.
When sycamore cells were suspended in basal medium containing choline, the latter was taken up by the cells very rapidly. A facilitated diffusion system appertained at low concentrations of choline and exhibited Michaelis-Menten kinetics. At higher choline concentrations simple diffusion appeared to be the principal mode of uptake. Addition of choline to the perfusate of compressed sycamore cells monitored by 31P NMR spectroscopy resulted in a dramatic accumulation of P-choline in the cytoplasmic compartment containing choline kinase and not in the vacuole. The total accumulation of P-choline over a 10-h period exhibited Michaelis-Menten kinetics. During this period, in the absence of Pi in the perfusion medium there was a marked depletion of glucose-6-P, and the cytoplasmic Pi resonance disappeared almost completely. When a threshold of cytoplasmic Pi was attained, the phosphorylation of choline was sustained by the continuous release of Pi from the vacuole although at a much lower rate. However, when 100 microM inorganic phosphate was present in the perfusion medium, externally added Pi was preferentially used to sustain P-choline synthesis. It is clear, therefore, that cytosolic choline kinase associated with a carrier-mediated transport system for choline uptake appeared as effective systems for continuously trapping cytoplasmic Pi including vacuolar Pi entering the cytoplasm.
当悬铃木细胞悬浮于含有胆碱的基础培养基中时,胆碱会迅速被细胞摄取。在低浓度胆碱时存在易化扩散系统,呈现米氏动力学。在较高胆碱浓度下,简单扩散似乎是主要的摄取方式。通过31P核磁共振光谱监测,向压缩的悬铃木细胞灌注液中添加胆碱后,磷酸胆碱在含有胆碱激酶的细胞质区室中显著积累,而不是在液泡中。在10小时内磷酸胆碱的总积累呈现米氏动力学。在此期间,灌注培养基中不存在无机磷酸时,葡萄糖-6-磷酸明显消耗,细胞质中无机磷酸的共振几乎完全消失。当达到细胞质无机磷酸的阈值时,胆碱的磷酸化由液泡中无机磷酸的持续释放维持,尽管速率要低得多。然而,当灌注培养基中存在100微摩尔无机磷酸时,外部添加的无机磷酸优先用于维持磷酸胆碱的合成。因此,很明显,与胆碱摄取的载体介导转运系统相关的胞质胆碱激酶似乎是持续捕获包括进入细胞质的液泡无机磷酸在内的细胞质无机磷酸的有效系统。