Ivanitsa V A, Al-Nuri M A, Egorov N S
Mikrobiologiia. 1981 Sep-Oct;50(5):801-6.
The biosynthesis of exocellular proteases by Aspergillus candidus is inhibited if a source of energy, carbon and nitrogen is added to the medium lacking one of these elements. The biosynthesis is not entirely inhibited if a sulfur source is added to the medium deficient in sulfur. The dynamics of free amino acid pool was studied under the conditions of deficiency of carbon, nitrogen and sulfur sources. The absence of a carbon or nitrogen source causes a decrease in the overall amino acid pool. The same correlation is true of most individual amino acids, with the exception of valine, tyrosine and phenylalanine (in the absence of a carbon source), or proline and glycine (in the conditions of deficiency of carbon and nitrogen sources). As soon as the limiting source is added to the medium, the amino acid pool rapidly rises. The deficiency of a sulfur source noticeably decreases the level of most amino acids in the cells. The addition of MgSO4 to the medium restores the pool of sulfur-containing amino acids while changes in the concentration of other amino acids remain the same.
如果在缺乏能量、碳源或氮源之一的培养基中添加相应元素,白色念珠菌胞外蛋白酶的生物合成会受到抑制。如果在缺硫的培养基中添加硫源,生物合成不会被完全抑制。在碳源、氮源和硫源缺乏的条件下研究了游离氨基酸库的动态变化。碳源或氮源的缺失会导致总氨基酸库减少。除缬氨酸、酪氨酸和苯丙氨酸(在缺乏碳源的情况下),或脯氨酸和甘氨酸(在碳源和氮源都缺乏的情况下)外,大多数单个氨基酸也呈现相同的相关性。一旦向培养基中添加限制源,氨基酸库会迅速增加。硫源的缺乏会显著降低细胞中大多数氨基酸的水平。向培养基中添加硫酸镁可恢复含硫氨基酸库,而其他氨基酸浓度的变化保持不变。