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NrrA directly regulates expression of the fraF gene and antisense RNAs for fraE in the heterocyst-forming cyanobacterium Anabaena sp. strain PCC 7120

机译:NRRA直接调节FRAF基因和反义RNA的表达,用于杂物形成的杂物间蓝藻anabaena sp。菌株PCC 7120

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The heterocystous cyanobacterium Anabaena sp. strain PCC 7120 grows as linear multicellular filaments that can contain hundreds of cells. Heterocysts, which are specialized cells for nitrogen fixation, are regularly intercalated among photosynthetic vegetative cells, and these cells are metabolically dependent on each other. Thus, multicellularity is essential for diazotrophic growth of heterocystous cyanobacteria. In Anabaena sp. strain PCC 7120, the fraF gene, which is required to limit filament length, is induced by nitrogen deprivation. The fraF transcripts extend to the fraE gene, which lies on the opposite DNA strand and could possess dual functionality, mRNAs for fraF and antisense RNAs for fraE. In the present study, we found that NrrA, a nitrogen-regulated response regulator, directly regulated expression of fraF. Induction of fraF by nitrogen deprivation was abolished by the nrrA disruption. NrrA specifically bound to the promoter region of fraF, and recognized an inverted repeat sequence. Thus, it is concluded that NrrA controls expression of mRNAs for fraF and antisense RNAs for fraE in response to nitrogen deprivation.
机译:杂囊性蓝杆菌anabaena sp。菌株PCC 7120生长为可含有数百个细胞的线性多细胞长丝。作为氮固定的专用细胞的杂环通常在光合营养细胞中定期嵌入,并且这些细胞彼此代谢地依赖。因此,多种细胞性对于杂囊性的杂曲线的虚拟营养生长至关重要。在Anabaena sp。通过氮剥夺诱导菌株PCC 7120,这是限制长丝长度所需的FRAF基因。 FRAF转录物延伸到FRAE基因,其位于相对的DNA链中,并且可以具有双重功能,FRAF的MRNA和FRAE的反义RNA。在本研究中,我们发现NRRA,一种氮气调节的反应调节剂,直接调节FRAF的表达。 NRRA破坏废除了氮气剥夺的FRAF诱导。 NRRA专门与FRAF的启动子区域结合,并认识到倒置的重复序列。因此,得出结论,NRRA对氮剥夺的反应,NRRA对FRAF的MRNA和反义RNA的表达进行了控制。

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