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由DL-7-氮杂色氨酸介导的鱼腥藻属CA菌株中的氮饥饿。

Nitrogen starvation mediated by DL-7-azatryptophan in the cyanobacterium Anabaena sp. strain CA.

作者信息

Chen C H, Van Baalen C, Tabita F R

出版信息

J Bacteriol. 1987 Mar;169(3):1107-13. doi: 10.1128/jb.169.3.1107-1113.1987.

Abstract

The addition of DL-7-azatryptophan (AZAT), a tryptophan analog, to continuous cultures of Anabaena sp. strain CA grown with 10 mM nitrate as the nitrogen source resulted in the differentiation of heterocysts. Analysis of the intracellular amino acid pools of Anabaena sp. strain CA after the addition of AZAT showed a marked decline in the intracellular glutamate pool and a slight increase in the levels of glutamine. The in vitro activity of glutamate synthase, the second enzyme involved in primary ammonia assimilation in Anabaena spp., was partially inhibited by the presence of AZAT at concentrations which are effective in triggering heterocyst formation (15% inhibition at 10 microM AZAT and up to 85% inhibition at 1.0 mM AZAT). Azaserine, a glutamine analog and potent glutamate synthase inhibitor, had no effect on the triggering of heterocyst development from undifferentiated batch and continuous cultures of Anabaena sp. strain CA. However, the presence of 1.0 microM azaserine significantly decreased the intracellular glutamate pool and increased the glutamine pool. The addition of AZAT also caused a decrease in the C-phycocyanin content of Anabaena sp. strain CA as a result of its proteolytic degradation. AZAT also had an inhibitory effect on the nitrogenase activity of Anabaena sp. strain CA. All these results suggest that AZAT causes a general nitrogen starvation of Anabaena sp. strain CA filaments, triggering heterocyst synthesis.

摘要

向以10 mM硝酸盐作为氮源生长的鱼腥藻属CA菌株的连续培养物中添加色氨酸类似物DL-7-氮杂色氨酸(AZAT),导致异形胞分化。添加AZAT后对鱼腥藻属CA菌株细胞内氨基酸库的分析表明,细胞内谷氨酸库显著下降,谷氨酰胺水平略有增加。谷氨酸合酶是鱼腥藻属中参与初级氨同化的第二种酶,其体外活性在有效触发异形胞形成的浓度下(10 μM AZAT时抑制15%,1.0 mM AZAT时抑制高达85%)受到AZAT的部分抑制。重氮丝氨酸是一种谷氨酰胺类似物和有效的谷氨酸合酶抑制剂,对未分化的鱼腥藻属CA菌株分批培养物和连续培养物触发异形胞发育没有影响。然而,1.0 μM重氮丝氨酸的存在显著降低了细胞内谷氨酸库并增加了谷氨酰胺库。添加AZAT还由于蛋白水解降解导致鱼腥藻属CA菌株的藻蓝蛋白含量降低。AZAT对鱼腥藻属CA菌株的固氮酶活性也有抑制作用。所有这些结果表明,AZAT导致鱼腥藻属CA丝状体普遍的氮饥饿,触发异形胞合成。

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