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Heme oxygenase 2 of the cyanobacterium Synechocystis sp. PCC 6803 is induced under a microaerobic atmosphere and is required for microaerobic growth at high light intensity

机译:蓝藻Synechocystis sp。的血红素加氧酶2。 PCC 6803在微需氧环境下诱导,是高光强度下微需氧生长所必需的

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Cyanobacteria, red algae, and cryptomonad algae utilize phycobilin chromophores that are attached to phycobiliproteins to harvest solar energy. Heme oxygenase (HO) in these organisms catalyzes the first step in phycobilin formation through the conversion of heme to biliverdin IXα, CO, and iron. The Synechocystis sp. PCC 6803 genome contains two open reading frames, ho1 (sll1184) and ho2 (sll1875), whose products have in vitro HO activity. We report that HO2, the protein encoded by ho2, was induced in the cells growing under a microaerobic atmosphere [0.2% (v/v) O2], whereas HO1 was constitutively expressed under both aerobic and microaerobic atmospheres. Light intensity did not have an effect on the expression of both the HOs. Cells, in which ho2 was disrupted, were unable to grow microaerobically at a light intensity of 40 μmol m−2 s−1, but did grow microaerobically at 10 μmol m−2 s−1 light intensity. These cells grew normally aerobically at both light intensities. Comparative analysis of complete cyanobacterial genomes revealed that possession of two HOs is common in cyanobacteria. In phylogenetic analysis of their amino acid sequences, cyanobacterial HO1 and HO2 homologs formed distinct clades. HO sequences of cyanobacteria that have only one isoform were most similar to HO1 sequences. We propose that HO2 might be the more ancient HO homolog that functioned under low O2 tension, whereas the derived HO1 can better accommodate increased O2 tension in the environment. Keywords Heme oxygenase - Cyanobacteria - Synechocystis sp. PCC 6803 - Microaerobic - Phycobilin - Chlorophyll
机译:蓝细菌,红藻和隐藻藻利用藻蓝蛋白生色团附着在藻胆蛋白上来收集太阳能。这些生物中的血红素加氧酶(HO)通过将血红素转化为BiliverdinIXα,CO和铁而催化藻蓝蛋白形成的第一步。集胞藻PCC 6803基因组包含两个开放阅读框,ho1(sll1184)和ho2(sll1875),其产物具有体外HO活性。我们报道HO2,由ho2编码的蛋白质,被诱导在微需氧环境下生长的细胞中[0.2%(v / v)O 2 ],而HO1在有氧和微需氧下均组成性表达气氛。光强度对两个HO的表达均没有影响。 ho2被破坏的细胞无法在40μmolm -2 s -1 的光强度下微微生长,但在10μmolm < sup> -2 s -1 光强度。这些细胞在两种光强度下都正常有氧生长。完整的蓝细菌基因组的比较分析表明,在蓝细菌中拥有两个HO是很常见的。在对其氨基酸序列的系统发育分析中,蓝细菌的HO1和HO2同源物形成了不同的进化枝。仅具有一种同工型的蓝细菌的HO序列与HO1序列最相似。我们认为HO2可能是在低O 2 张力下起作用的更古老的HO同源物,而派生的HO1可以更好地适应环境中增加的O 2 张力。关键词血红素加氧酶-蓝细菌-集胞藻PCC 6803-微需氧-藻胆素-叶绿素

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