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首页> 外文期刊>The Journal of General and Applied Microbiology >Overexpression of the response regulator rpaA causes an impaired cell division in the Cyanobacterium Synechocystis sp. PCC 6803
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Overexpression of the response regulator rpaA causes an impaired cell division in the Cyanobacterium Synechocystis sp. PCC 6803

机译:响应调节剂RPAA的过度表达导致Cyanobacterium Snechocystis SP中的细胞分裂受损。 PCC 6803.

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In photosynthetic microorganisms, cell cycle progression depends on day and night cycles; however, how cell division is regulated in response to these environmental changes is poorly understood. RpaA has been implicated in the signal output from both circadian clocks and light/dark conditions in the unicellular spherical-celled cyanobacterium Synechocystis sp. PCC 6803. In the present study, we investigated the involvement of a two-component response regulator RpaA in cell division regulation. Firstly, we examined the effects of rpaA overexpression on cell morphology and the expression levels of cell division genes. We observed an increase in the volume of non-dividing cells and a high proportion of dividing cells in rpaA-overexpressing strains by light microscopy. The expression levels of selected cell division-related genes were higher in the rpaA-overexpressing strain than in the wild type, including minD of the Min system; cdv3 and zipN, which encode two divisome components; and murB, murC, and pbp2, which are involved in peptidoglycan (PG) synthesis. Moreover, in the rpaA-overexpressing strain, the outer membrane and cell wall PG layer were not smooth, and the outer membrane was not clearly visible by transmission electron microscopy. These results demonstrated that rpaA overexpression causes an impaired cell division, which is accompanied by transcriptional activation of cell division genes and morphological changes in the PG layer and outer membrane.
机译:在光合微生物中,细胞周期进展取决于日夜循环;但是,对细胞分裂的监管是如何应对这些环境变化的监管,这是较差的理解。 RPAA一直涉及从单细胞球形细胞Cyanobacteriums Sp中的昼夜节律时钟和光/暗条件的信号输出。 PCC 6803.在本研究中,我们研究了双组分响应调节剂RPAA在细胞分裂调节中的参与。首先,我们检查了RPAA过度表达对细胞形态和细胞分裂基因表达水平的影响。我们观察到通过光学显微镜观察到rPAA过表达菌株中的非分裂细胞的体积和高比例的分割细胞。 RPAA过表达应变的表达水平高于野生型,包括MIN系统的耐心; CDV3和邮政编码两种分层组件;和植物,Murc和PBP2,其参与肽聚糖(PG)合成。此外,在RPAA过度抑制应变中,外膜和细胞壁PG层不平滑,并且通过透射电子显微镜清楚地看到外膜。这些结果表明,RPAA过表达导致细胞分裂受损,其伴随着细胞分裂基因的转录激活和PG层和外膜的形态变化。

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