Thomas C M, Baxter R L
J Bacteriol. 1987 Jan;169(1):359-66. doi: 10.1128/jb.169.1.359-366.1987.
The adaptation of Neurospora crassa mycelium to growth on acetate as the sole carbon source was examined by using 13C nuclear magnetic resonance. Extracts were examined by nuclear magnetic resonance at various times after transfer of the mycelium from medium containing sucrose to medium containing [2-13C]acetate as the sole carbon source. The label was initially seen to enter the alanine, glutamate, and glutamine pools, and after 6 h 13C-enriched trehalose was evident, indicating that gluconeogenesis was occurring. Analysis of the isotopomer ratios in the alanine and glutamate-glutamine pools indicated that substantial glyoxylate cycle activity became evident between 2 and 4 h after transfer. Immediately after transfer of the mycelium to acetate medium, the alanine pool increased to about four times its previous level, only a small fraction of which was enriched with 13C. The quantity of 13C-enriched alanine remained almost constant between 2 and 7.5 h after the transfer, whereas the overall alanine pool decreased to its original level. The selective catabolism of the unenriched alanine leads us to suggest that the alanine pool is partitioned into two compartments during adaptation. Two acetate-nonutilizing mutants were also studied by this technique. An acu-3 strain, deficient for isocitrate lyase (EC 4.1.3.1) activity, showed metabolic changes consistent with this lesion. An acp strain, previously thought to be deficient in an inducible acetate permease, took up [2-13C]acetate but showed no evidence of glyoxylate cycle activity despite synthesizing the necessary enzymes; the lesion was therefore reinterpreted.
利用碳-13核磁共振技术研究了粗糙脉孢菌菌丝体对以乙酸盐作为唯一碳源生长的适应性。将菌丝体从含有蔗糖的培养基转移至含有[2-碳-13]乙酸盐作为唯一碳源的培养基后,在不同时间通过核磁共振对提取物进行检测。最初发现标记物进入丙氨酸、谷氨酸和谷氨酰胺库,6小时后富含碳-13的海藻糖明显出现,这表明糖异生作用正在发生。对丙氨酸以及谷氨酸-谷氨酰胺库中同位素异构体比例的分析表明,转移后2至4小时之间,乙醛酸循环的活性显著增强。将菌丝体转移至乙酸盐培养基后,丙氨酸库立即增加至先前水平的约四倍,其中只有一小部分富含碳-13。转移后2至7.5小时之间,富含碳-13的丙氨酸数量几乎保持不变,而总的丙氨酸库则降至其原始水平。未富集丙氨酸的选择性分解代谢使我们认为,在适应过程中丙氨酸库被分为两个区室。还通过该技术研究了两个不利用乙酸盐的突变体。一个acu-3菌株缺乏异柠檬酸裂解酶(EC 4.1.3.1)活性,其代谢变化与该损伤一致。一个acp菌株,先前认为缺乏诱导型乙酸盐通透酶,但它摄取了[2-碳-13]乙酸盐,尽管合成了必要的酶,但未显示出乙醛酸循环活性;因此对该损伤进行了重新解释。