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碳源对粗糙脉孢菌精氨酸代谢中酶及代谢产物的影响。

Effect of carbon source on enzymes and metabolites of arginine metabolism in Neurospora.

作者信息

Drainas C, Weiss R L

出版信息

J Bacteriol. 1980 Jan;141(1):205-12. doi: 10.1128/jb.141.1.205-212.1980.

Abstract

The levels of enzymes and metabolites of arginine metabolism were determined in exponential cultures of Neurospora crassa grown on various carbon sources. The carbon sources decreased in effectiveness (as determined by generation times) in the following order: sucrose, acetate, glycerol, and ethanol. The basal and induced levels of the catabolic enzymes, arginase (EC 3.5.3.1) and ornithine transaminase (EC 2.6.1.13), were lower in mycelia grown on poor carbon sources. Arginase was more sensitive to variations in carbon source than was ornithine transaminase. Induction of both enzymes was sensitive to nitrogen metabolite control, but this sensitivity was reduced in mycelia grown on glycerol or ethanol. The pools of arginine and ornithine were reduced in mycelia grown in unsupplemented medium containing poor carbon sources, but the biosynthetic enzyme ornithine transcarbamylase (EC 2.1.3.3) was not derepressed. The arginine pools were similar, regardless of carbon source, in mycelia grown in arginine-supplemented medium. The ornithine pool was reduced by growth on poor carbon sources. The rate of arginine degradation was proportional to the level of arginase in both sucrose- and glycerol-grown mycelia. The distribution of arginine between cytosol and vesicles was only slightly altered by growth on glycerol instead of sucrose. The slightly smaller cytosolic arginine concentration did not appear to be sufficient to account for the alterations in basal and induced enzyme levels. The results suggest a possible carbon metabolite effect on the expression or turnover of a variety of genes for enzymes of arginine metabolism in Neurospora.

摘要

在以各种碳源培养的粗糙脉孢菌指数生长期培养物中,测定了精氨酸代谢的酶和代谢物水平。碳源的有效性(以世代时间衡量)按以下顺序降低:蔗糖、乙酸盐、甘油和乙醇。在以劣质碳源生长的菌丝体中,分解代谢酶精氨酸酶(EC 3.5.3.1)和鸟氨酸转氨酶(EC 2.6.1.13)的基础水平和诱导水平较低。精氨酸酶比鸟氨酸转氨酶对碳源变化更敏感。两种酶的诱导对氮代谢物控制敏感,但在以甘油或乙醇生长的菌丝体中这种敏感性降低。在含有劣质碳源的未补充培养基中生长的菌丝体中,精氨酸和鸟氨酸池减少,但生物合成酶鸟氨酸转氨甲酰酶(EC 2.1.3.3)没有去阻遏。在补充精氨酸的培养基中生长的菌丝体中,无论碳源如何,精氨酸池相似。以劣质碳源生长会使鸟氨酸池减少。在蔗糖和甘油生长的菌丝体中,精氨酸降解速率与精氨酸酶水平成正比。与在蔗糖上生长相比,在甘油上生长仅略微改变了精氨酸在细胞质和囊泡之间的分布。细胞质中精氨酸浓度略低似乎不足以解释基础酶水平和诱导酶水平的变化。结果表明,碳代谢物可能对粗糙脉孢菌中精氨酸代谢酶的多种基因的表达或周转产生影响。

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