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黑曲霉细胞内环状AMP水平的自发变化受培养基中蔗糖浓度和光照的影响。

A spontaneous change in the intracellular cyclic AMP level in Aspergillus niger is influenced by the sucrose concentration in the medium and by light.

作者信息

Gradisnik-Grapulin M, Legisa M

机构信息

National Institute of Chemistry, Ljubljana, Slovenia.

出版信息

Appl Environ Microbiol. 1997 Jul;63(7):2844-9. doi: 10.1128/aem.63.7.2844-2849.1997.

Abstract

A spontaneous rise in intracellular cyclic AMP (cAMP) levels was observed in the early stages of Aspergillus niger growth under conditions yielding large amounts of citric acid. The amount of cAMP formed was found to depend on the initial concentration of sucrose in the medium. Under higher-sucrose conditions, the cAMP peak appeared earlier and was higher, while in lower-sucrose media a flattened peak was observed later in fermentation. Since in media with higher concentrations of sucrose intracellular citric acid starts to accumulate earlier and more rapidly, cAMP synthesis may be triggered by intracellular acidification, which is caused by the dissociation of citric acid. No spontaneous increase in cAMP concentrations could be detected when the cells were grown in continuously illuminated cultures, suggesting that A. niger phosphodiesterase (PDE) is photoregulated. More evidence for the activation of PDE by light was obtained from morphological studies under light and dark conditions in the presence of cAMP or N6,O2'-dibutyryl cAMP, and this idea was additionally supported by experiments in which PDE inhibitors were tested.

摘要

在产生大量柠檬酸的条件下,黑曲霉生长早期观察到细胞内环状腺苷酸(cAMP)水平自发升高。发现形成的cAMP量取决于培养基中蔗糖的初始浓度。在高蔗糖条件下,cAMP峰值出现得更早且更高,而在低蔗糖培养基中,发酵后期观察到峰值变平。由于在蔗糖浓度较高的培养基中,细胞内柠檬酸开始更早且更快速地积累,cAMP合成可能由柠檬酸解离引起的细胞内酸化触发。当细胞在持续光照培养物中生长时,未检测到cAMP浓度的自发增加,这表明黑曲霉磷酸二酯酶(PDE)受光调节。在有cAMP或N6,O2'-二丁酰cAMP存在的明暗条件下进行的形态学研究获得了更多光激活PDE的证据,并且在测试PDE抑制剂的实验中进一步支持了这一观点。

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