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PipX、PipY或RelQ过表达对蓝藻PCC7942的生长、细胞大小、光合作用和多聚磷酸盐积累的多效性影响。

Pleiotropic effects of PipX, PipY, or RelQ overexpression on growth, cell size, photosynthesis, and polyphosphate accumulation in the cyanobacterium PCC7942.

作者信息

Llop Antonio, Labella Jose I, Borisova Marina, Forchhammer Karl, Selim Khaled A, Contreras Asunción

机构信息

Departamento de Fisiología, Genética y Microbiología, Facultad de Ciencias, Universidad de Alicante, Alicante, Spain.

Interfaculty Institute for Microbiology and Infection Medicine, Organismic Interactions Department, Cluster of Excellence 'Controlling Microbes to Fight Infections', University of Tübingen, Tübingen, Germany.

出版信息

Front Microbiol. 2023 Mar 16;14:1141775. doi: 10.3389/fmicb.2023.1141775. eCollection 2023.

Abstract

The cyanobacterial protein PipY belongs to the Pyridoxal-phosphate (PLP)-binding proteins (PLPBP/COG0325) family of pyridoxal-phosphate-binding proteins, which are represented in all three domains of life. These proteins share a high degree of sequence conservation, appear to have purely regulatory functions, and are involved in the homeostasis of vitamin B vitamers and amino/keto acids. Intriguingly, the genomic context of the gene in cyanobacteria connects PipY with PipX, a protein involved in signaling the intracellular energy status and carbon-to-nitrogen balance. PipX regulates its cellular targets protein-protein interactions. These targets include the PII signaling protein, the ribosome assembly GTPase EngA, and the transcriptional regulators NtcA and PlmA. PipX is thus involved in the transmission of multiple signals that are relevant for metabolic homeostasis and stress responses in cyanobacteria, but the exact function of PipY is still elusive. Preliminary data indicated that PipY might also be involved in signaling pathways related to the stringent stress response, a pathway that can be induced in the unicellular cyanobacterium PCC7942 by overexpression of the (p)ppGpp synthase, RelQ. To get insights into the cellular functions of PipY, we performed a comparative study of PipX, PipY, or RelQ overexpression in PCC7942. Overexpression of PipY or RelQ caused similar phenotypic responses, such as growth arrest, loss of photosynthetic activity and viability, increased cell size, and accumulation of large polyphosphate granules. In contrast, PipX overexpression decreased cell length, indicating that PipX and PipY play antagonistic roles on cell elongation or cell division. Since ppGpp levels were not induced by overexpression of PipY or PipX, it is apparent that the production of polyphosphate in cyanobacteria does not require induction of the stringent response.

摘要

蓝藻蛋白PipY属于磷酸吡哆醛(PLP)结合蛋白(PLPBP/COG0325)家族,这类蛋白在生命的三个域中均有发现。这些蛋白具有高度的序列保守性,似乎仅具有调节功能,并且参与维生素B维生素异构体以及氨基酸/酮酸的稳态平衡。有趣的是,蓝藻中该基因的基因组背景将PipY与PipX联系起来,PipX是一种参与细胞内能量状态和碳氮平衡信号传导的蛋白。PipX通过蛋白质-蛋白质相互作用调节其细胞靶点。这些靶点包括PII信号蛋白、核糖体组装GTP酶EngA以及转录调节因子NtcA和PlmA。因此,PipX参与了与蓝藻代谢稳态和应激反应相关的多种信号的传递,但PipY的确切功能仍不清楚。初步数据表明,PipY可能也参与了与严格应激反应相关的信号通路,在单细胞蓝藻PCC7942中,该通路可通过(p)ppGpp合酶RelQ的过表达来诱导。为了深入了解PipY的细胞功能,我们对PCC7942中PipX、PipY或RelQ的过表达进行了比较研究。PipY或RelQ的过表达引起了相似的表型反应,如生长停滞、光合活性和活力丧失、细胞大小增加以及大量多聚磷酸盐颗粒的积累。相比之下,PipX的过表达使细胞长度缩短,这表明PipX和PipY在细胞伸长或细胞分裂中起拮抗作用。由于PipY或PipX的过表达并未诱导ppGpp水平升高,显然蓝藻中多聚磷酸盐的产生并不需要诱导严格反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ff3/10060972/7ff0f63d7593/fmicb-14-1141775-g001.jpg

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