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单细胞蓝藻中P(II)信号蛋白相互作用网络。

The network of P(II) signalling protein interactions in unicellular cyanobacteria.

作者信息

Forchhammer Karl

机构信息

Institut für Mikrobiologie der Eberhard-Karls-Universität Tübingen, Auf der Morgenstelle 28, D-72076, Tübingen, Germany.

出版信息

Adv Exp Med Biol. 2010;675:71-90. doi: 10.1007/978-1-4419-1528-3_5.

DOI:10.1007/978-1-4419-1528-3_5
PMID:20532736
Abstract

P(II) signalling proteins constitute a large superfamily of signal perception and transduction proteins, which is represented in all domains of life and whose members play central roles in coordinating nitrogen assimilation. Generally, P(II) proteins act as sensors of the cellular adenylylate energy charge and 2-oxoglutarate level, and in response to these signals, they regulate central nitrogen assimilatory processes at various levels of control (from nutrient transport to gene expression) through protein-protein interactions with P(II) receptor proteins. An examination of the phylogeny of cyanobacteria reveals that specific functions of P(II) signalling evolved in this microbial lineage, which are not found in other prokaryotes. At least one of these functions, regulation of arginine biosynthesis by controlling the key enzyme N-acetyl-L: -glutamate kinase (NAGK), was transmitted by the ancestral cyanobacterium, which gave rise to chloroplasts, into the eukaryotic domain and was conserved during the evolution of planta. We have investigated in some detail the P(II) signalling protein, its signal perception and its interactions with receptors in the unicellular cyanobacteria Synechococcus elongatus PCC 7942 and Synechocystis PCC 6803 and have performed comparative analysis with Arabidopsis thaliana P(II)-NAGK interaction. This chapter will summarize these studies and will describe the emerging picture of a complex network of P(II) protein interactions in the unicellular cyanobacteria.

摘要

P(II) 信号蛋白构成了一个庞大的信号感知和转导蛋白超家族,存在于生命的所有领域,其成员在协调氮同化过程中发挥核心作用。一般来说,P(II) 蛋白充当细胞腺苷酸能量电荷和 2-酮戊二酸水平的传感器,并且响应这些信号,它们通过与 P(II) 受体蛋白的蛋白质-蛋白质相互作用,在不同控制水平(从营养物质运输到基因表达)调节核心氮同化过程。对蓝细菌系统发育的研究表明,P(II) 信号的特定功能在这个微生物谱系中进化而来,而在其他原核生物中未发现。这些功能中至少有一个,即通过控制关键酶 N-乙酰-L-谷氨酸激酶 (NAGK) 来调节精氨酸生物合成,是由产生叶绿体的祖先蓝细菌传递到真核域,并在植物进化过程中得以保留。我们已经详细研究了单细胞蓝细菌聚球藻 PCC 7942 和集胞藻 PCC 6803 中的 P(II) 信号蛋白、其信号感知以及它与受体的相互作用,并与拟南芥 P(II)-NAGK 相互作用进行了比较分析。本章将总结这些研究,并描述单细胞蓝细菌中 P(II) 蛋白相互作用复杂网络的新情况。

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1
The network of P(II) signalling protein interactions in unicellular cyanobacteria.单细胞蓝藻中P(II)信号蛋白相互作用网络。
Adv Exp Med Biol. 2010;675:71-90. doi: 10.1007/978-1-4419-1528-3_5.
2
Signal-transduction protein P(II) from Synechococcus elongatus PCC 7942 senses low adenylate energy charge in vitro.来源于聚球藻 PCC 7942 的信号转导蛋白 P(II)在体外感知低腺苷酸能量电荷。
Biochem J. 2011 Nov 15;440(1):147-56. doi: 10.1042/BJ20110536.
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N-acetyl-L-glutamate kinase (NAGK) from oxygenic phototrophs: P(II) signal transduction across domains of life reveals novel insights in NAGK control.来自产氧光合生物的N-乙酰-L-谷氨酸激酶(NAGK):跨生命域的P(II)信号转导揭示了NAGK调控的新见解。
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Keeping in touch with PII: PII-interacting proteins in unicellular cyanobacteria.与个人身份信息(PII)保持联系:单细胞蓝藻中与PII相互作用的蛋白质
Plant Cell Physiol. 2007 Jul;48(7):908-14. doi: 10.1093/pcp/pcm072. Epub 2007 Jun 12.
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From cyanobacteria to Archaeplastida: new evolutionary insights into PII signalling in the plant kingdom.从蓝细菌到泛植物:植物王国中PII信号传导的新进化见解
New Phytol. 2020 Aug;227(3):722-731. doi: 10.1111/nph.16492. Epub 2020 Mar 27.
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The Synechococcus elongatus P signal transduction protein controls arginine synthesis by complex formation with N-acetyl-L-glutamate kinase.聚球藻P信号转导蛋白通过与N-乙酰-L-谷氨酸激酶形成复合物来控制精氨酸的合成。
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Global carbon/nitrogen control by PII signal transduction in cyanobacteria: from signals to targets.蓝藻中通过PII信号转导实现的全球碳/氮控制:从信号到靶点。
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The crystal structure of the complex of PII and acetylglutamate kinase reveals how PII controls the storage of nitrogen as arginine.PII与乙酰谷氨酸激酶复合物的晶体结构揭示了PII如何控制精氨酸形式的氮储存。
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A novel signal transduction protein P(II) variant from Synechococcus elongatus PCC 7942 indicates a two-step process for NAGK-P(II) complex formation.来自集胞藻 PCC 7942 的新型信号转导蛋白 P(II)变体表明 NAGK-P(II) 复合物形成的两步过程。
J Mol Biol. 2010 Jun 11;399(3):410-21. doi: 10.1016/j.jmb.2010.04.018. Epub 2010 Apr 24.
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From cyanobacteria to plants: conservation of PII functions during plastid evolution.从蓝藻到植物:质体进化过程中 PII 功能的保守性。
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