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Identification and nitrogen regulation of the cyanase gene from the cyanobacteria Synechocystis sp. strain PCC 6803 and Synechococcus sp. strain PCC 7942.

机译:鉴定和从蓝细菌蓝藻属藻种氰化酶基因的氮调控。菌株PCC 6803和Synechococcus sp。株PCC 7942。

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摘要

An open reading frame (slr0899) on the genome of Synechocystis sp. strain PCC 6803 encodes a polypeptide of 149 amino acid residues, the sequence of which is 40% identical to that of cyanase from Escherichia coli. Introduction into a cyanase-deficient E. coli strain of a plasmid-borne slr0899 resulted in expression of low but significant activity of cyanase. Targeted interruption of a homolog of slr0899 from Synechococcus sp. strain PCC 7942, encoding a protein 77% identical to that encoded by slr0899, resulted in loss of cellular cyanase activity. These results indicated that slr0899 and its homolog in the strain PCC 7942 represent the cyanobacterial cyanase gene (designated cynS). While cynS of strain PCC 6803 is tightly clustered with the four putative molybdenum cofactor biosynthesis genes located downstream, cynS of strain PCC 7942 was found to be tightly clustered with the two genes located upstream, which encode proteins similar to the subunits of the cyanobacterial nitrate-nitrite transporter. In both strains, cynS was transcribed as a part of a large transcription unit and the transcription was negatively regulated by ammonium. Cyanase activity was low in ammonium-grown cells and was induced 7- to 13-fold by inhibition of ammonium fixation or by transfer of the cells to ammonium-free media. These findings indicated that cyanase is an ammonium-repressible enzyme in cyanobacteria, the expression of which is regulated at the level of transcription. Similar to other ammonium-repressible genes in cyanobacteria, expression of cynS required NtcA, a global nitrogen regulator of cyanobacteria.
机译:Synechocystis sp。基因组上的开放阅读框(slr0899)。菌株PCC 6803编码具有149个氨基酸残基的多肽,其序列与来自大肠杆菌的氰化酶的序列具有40%相同。引入质粒携带的slr0899的氰化酶缺陷型大肠杆菌菌株导致表达低但显着的氰化酶活性。有针对性地中断来自Synechococcus sp。的slr0899同源物。编码与slr0899编码的蛋白质77%相同的蛋白质的PCC 7942菌株导致细胞氰化酶活性降低。这些结果表明,slr0899及其在PCC 7942菌株中的同系物代表蓝细菌氰化酶基因(称为cynS)。虽然PCC 6803菌株的cynS与位于下游的四个推定的钼辅因子生物合成基因紧密地聚集在一起,但发现PCC 7942菌株的cynS与位于上游的两个基因紧密地聚集在一起,它们编码的蛋白质类似于蓝细菌硝酸盐亚基的亚基。亚硝酸盐转运蛋白。在这两种菌株中,cynS作为大转录单位的一部分被转录,并且转录受到铵的负调控。在铵生长的细胞中,氰化酶活性较低,并通过抑制铵固定或将细胞转移至无铵的培养基中诱导了7至13倍。这些发现表明,氰化酶是蓝细菌中一种铵可抑制的酶,其表达在转录水平上受到调节。类似于蓝细菌中其他可抑制铵离子的基因,cynS的表达需要NtcA(蓝细菌的全球氮调节剂)。

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