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海洋聚球藻属菌株WH 7803中ntcA表达及亚硝酸盐摄取的调控

Regulation of ntcA expression and nitrite uptake in the marine Synechococcus sp. strain WH 7803.

作者信息

Lindell D, Padan E, Post A F

机构信息

H. Steinitz Marine Biology Laboratory, Interuniversity Institute for Marine Sciences, Eilat, Israel.

出版信息

J Bacteriol. 1998 Apr;180(7):1878-86. doi: 10.1128/JB.180.7.1878-1886.1998.

Abstract

NtcA is a transcriptional activator involved in global nitrogen control in cyanobacteria. In the absence of ammonium it regulates the transcription of a series of genes encoding proteins required for the uptake and assimilation of alternative nitrogen sources (I. Luque, E. Flores, and A. Herrero, EMBO J. 13:2862-2869, 1994). ntcA, present in a single copy in the marine Synechococcus sp. strain WH 7803, was cloned and sequenced. The putative amino acid sequence shows a high degree of identity to NtcA from freshwater cyanobacteria in two functional domains. The expression of ntcA was negatively regulated by ammonium from a putative transcription start point located downstream of an NtcA consensus recognition sequence. Addition of either rifampin or ammonium led to a rapid decline in ntcA transcript levels with half-lives of less than 2 min in both cases. Nitrate-grown cells showed high ntcA transcript levels, as well as the capacity for active nitrite uptake. However, ammonium-grown cells showed low levels of the ntcA transcript and did not utilize nitrite. The addition of ammonium to nitrite uptake-active cells resulted in a gradual decline in the rate of uptake over a 24-h period. Active nitrite uptake was not induced in cells transferred to medium lacking a nitrogen source despite evidence of elevated expression of ntcA, indicating that ntcA expression is not sufficient for uptake capacity to develop. Nitrate and nitrite addition led to the development of nitrite uptake, whereas the addition of leucine did not. Furthermore, nitrite addition triggered the de novo protein synthesis required for uptake capacity to develop. These data suggest that nitrite and nitrate act as specific inducers for the synthesis of proteins required for nitrite uptake.

摘要

NtcA是一种参与蓝藻全局氮控制的转录激活因子。在没有铵的情况下,它调节一系列编码替代氮源吸收和同化所需蛋白质的基因的转录(I. 卢克、E. 弗洛雷斯和A. 埃雷罗,《欧洲分子生物学组织杂志》13:2862 - 2869,1994年)。海洋聚球藻属菌株WH 7803中以单拷贝存在的ntcA被克隆并测序。推测的氨基酸序列在两个功能域与淡水蓝藻的NtcA具有高度同一性。ntcA的表达受到铵的负调控,其假定的转录起始点位于NtcA共有识别序列下游。添加利福平或铵都会导致ntcA转录本水平迅速下降,两种情况下半衰期均小于2分钟。以硝酸盐培养的细胞显示出高ntcA转录本水平,以及活跃的亚硝酸盐吸收能力。然而,以铵培养的细胞显示出低水平的ntcA转录本,并且不利用亚硝酸盐。向具有亚硝酸盐吸收活性的细胞中添加铵会导致24小时内吸收速率逐渐下降。转移到缺乏氮源的培养基中的细胞尽管有ntcA表达升高的证据,但并未诱导出活跃的亚硝酸盐吸收,这表明ntcA表达不足以使吸收能力发展。添加硝酸盐和亚硝酸盐会导致亚硝酸盐吸收能力的发展,而添加亮氨酸则不会。此外,添加亚硝酸盐会触发吸收能力发展所需的从头蛋白质合成。这些数据表明,亚硝酸盐和硝酸盐作为亚硝酸盐吸收所需蛋白质合成的特异性诱导剂。

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