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在集胞藻6803(Synechococcus sp. PCC 7942)中,信号转导蛋白PII的磷酸化以及另一种效应物是PII介导的硝酸盐和亚硝酸盐吸收调控所必需的。

Phosphorylation of the signal transducer PII protein and an additional effector are required for the PII-mediated regulation of nitrate and nitrite uptake in the Cyanobacterium synechococcus sp. PCC 7942.

作者信息

Lee H M, Flores E, Forchhammer K, Herrero A, Tandeau De Marsac N

机构信息

Département de Biochimie et Génétique Moléculaire, Unité de Physiologie Microbienne, Paris, France.

出版信息

Eur J Biochem. 2000 Jan;267(2):591-600. doi: 10.1046/j.1432-1327.2000.01043.x.

Abstract

In the cyanobacterium Synechococcus sp. strain PCC 7942, the phosphorylation states of the signal transducer PII protein (GlnB) can change rapidly depending on the nitrogen and carbon supply. A PII-null mutant (MP2) shows no ammonium-dependent inhibition of the nitrate and nitrite uptake, in contrast to the wild-type. New mutants with different types of PII, which may mimic either the phosphorylated (GlnBS49E or GlnBS49D) or unphosphorylated (GlnBS49A) form of the protein, were constructed using site-directed in vitro mutagenesis. Mutant MP2-A (GlnBS49A) grew poorly using nitrate as a nitrogen source and was unable to take up nitrate supplied at 100 microM, even in the absence of externally added ammonium. Mutants MP2-D and MP2-E (GlnBS49D and GlnBS49E, respectively), however, showed nitrate-dependent growth and regulation of nitrate uptake by ammonium, as in the wild-type. Characterization of the mutants also included an analysis of nitrite uptake and of the levels of the nir (nitrate/nitrite assimilation) operon transcripts, the presence of NrtA (nitrate/nitrite transport binding protein), and nitrate and nitrite reductase activities. In vitro, no significant difference was observed in the cooperative binding of ATP and 2-oxoglutarate between the wild-type and the unphosphorylated or phosphorylated-like forms of the mutant PII proteins. The results obtained indicate that both unphosphorylated and phosphorylated-like forms of PII are able to inhibit nitrate uptake in the presence of ammonium, but the unphosphorylated form also has a negative effect in the absence of this nitrogen source. Therefore, an additional effector, possibly 2-oxoglutarate, is required for the PII protein to relieve inhibition of nitrate uptake in the absence of ammonium.

摘要

在蓝藻聚球藻属(Synechococcus sp.)菌株PCC 7942中,信号转导蛋白PII(GlnB)的磷酸化状态可根据氮和碳的供应情况迅速变化。与野生型相比,PII缺失突变体(MP2)对硝酸盐和亚硝酸盐的吸收没有铵依赖性抑制作用。利用定点体外诱变构建了具有不同类型PII的新突变体,这些突变体可能模拟蛋白质的磷酸化形式(GlnBS49E或GlnBS49D)或未磷酸化形式(GlnBS49A)。突变体MP2-A(GlnBS49A)以硝酸盐作为氮源时生长不佳,即使在没有外源添加铵的情况下,也无法吸收100微摩尔的硝酸盐。然而,突变体MP2-D和MP2-E(分别为GlnBS49D和GlnBS49E)表现出硝酸盐依赖性生长以及铵对硝酸盐吸收的调节作用,与野生型相同。对这些突变体的特性分析还包括对亚硝酸盐吸收、nir(硝酸盐/亚硝酸盐同化)操纵子转录本水平、NrtA(硝酸盐/亚硝酸盐转运结合蛋白)的存在以及硝酸盐和亚硝酸盐还原酶活性的分析。在体外,野生型与突变体PII蛋白的未磷酸化或磷酸化样形式之间,ATP和2-酮戊二酸的协同结合未观察到显著差异。所得结果表明,PII的未磷酸化形式和磷酸化样形式在有铵存在时都能够抑制硝酸盐的吸收,但未磷酸化形式在没有这种氮源时也有负面影响。因此,在没有铵的情况下,PII蛋白需要一种额外的效应物(可能是2-酮戊二酸)来解除对硝酸盐吸收的抑制。

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