Cramer C L, Vaughn L E, Davis R H
J Bacteriol. 1980 Jun;142(3):945-52. doi: 10.1128/jb.142.3.945-952.1980.
At least 78%, and perhaps all, of inorganic polyphosphate is shown to be contained within the vesicles (vacuoles) of Neurospora crassa, where over 97% of the soluble arginine, lysine, and ornithine pools are known to accumulate. Furthermore, synthetic polyphosphate can concentrate arginine up to 400-fold from dilute (0.01 mM) solutions in equilibrium dialysis. For these reasons and because the molar ratio of basic amino acids and polyphosphate phosphorus is approximately 1, we tested the hypothesis that there was an obligate physiological relationship between them. Experiments in which nitrogen starvation and arginine excess were imposed upon cells showed that polyphosphate content was insensitive to changes in the basic amino acid content. Experiments involving phosphate starvation and restoration showed that basic amino acid content was almost wholly independent of polyphosphate pools. Moreover, the normal high degree of compartmentation of arginine in vesicles was maintained despite polyphosphate depletion, and arginine was still exchanged across the vesicular membrane. We conclude that N. crassa, like yeasts, can regulate polyphosphates and basic amino acids independently, and that the accumulation of basic amino acids in vesicles may depend upon an energy-requiring mechanism in addition to the demonstrated charge interaction with polyphosphate.
已证明,至少78%,甚至可能全部的无机多聚磷酸盐都包含在粗糙脉孢菌的囊泡(液泡)中,已知超过97%的可溶性精氨酸、赖氨酸和鸟氨酸池在那里积累。此外,合成多聚磷酸盐在平衡透析中能将稀溶液(0.01 mM)中的精氨酸浓缩400倍。基于这些原因,并且由于碱性氨基酸与多聚磷酸盐磷的摩尔比约为1,我们检验了它们之间存在必然生理关系的假设。对细胞施加氮饥饿和精氨酸过量的实验表明,多聚磷酸盐含量对碱性氨基酸含量的变化不敏感。涉及磷酸盐饥饿和恢复的实验表明,碱性氨基酸含量几乎完全独立于多聚磷酸盐池。此外,尽管多聚磷酸盐耗尽,但囊泡中精氨酸的正常高度区室化得以维持,并且精氨酸仍能跨囊泡膜进行交换。我们得出结论,粗糙脉孢菌与酵母一样,可以独立调节多聚磷酸盐和碱性氨基酸,并且囊泡中碱性氨基酸的积累可能除了已证明的与多聚磷酸盐的电荷相互作用外,还依赖于一种需要能量的机制。