首页> 外文期刊>Journal of bacteriology >The Cyanobacterial NAD Kinase Gene sll1415 Is Required for Photoheterotrophic Growth and Cellular Redox Homeostasis in Synechocystis sp. Strain PCC 6803
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The Cyanobacterial NAD Kinase Gene sll1415 Is Required for Photoheterotrophic Growth and Cellular Redox Homeostasis in Synechocystis sp. Strain PCC 6803

机译:蓝藻NAD激酶基因sll1415是光异养生长和集胞藻属中细胞氧化还原稳态所必需的。应变PCC 6803

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NAD kinase (NADK), which phosphorylates NAD to NADP, is one of the key enzymes regulating the cellular NADP(H) level. In Synechocystis sp. strain PCC 6803, slr0400 and sll1415 were shown to encode NAD kinases. The NADP(H) pool in the cyanobacterium was remarkably reduced by an sll1415-null mutation but slightly reduced by an slr0400-null mutation. The reduction of the NADP(H) level in the sll1415 mutant led to a significant accumulation of glucose-6-phosphate and a loss of photoheterotrophic growth. As the primary NADK gene, sll1415 was found to inhibit the transcription of genes involved in redox homeostasis and to exert stronger effects on methyl viologen tolerance than slr0040.
机译:NAD激酶(NADK)将NAD磷酸化为NADP,是调节细胞NADP(H)水平的关键酶之一。在集胞藻中。显示PCC 6803株, slr0400 sll1415 编码NAD激酶。蓝藻中的NADP(H)库被 sll1415 -null突变显着降低,但被 slr0400 -null突变略有降低。 sll1415 突变体中NADP(H)水平的降低导致6-磷酸葡萄糖的大量积累和光异养生长的损失。作为主要的NADK基因, sll1415 被发现比 slr0040 抑制氧化还原稳态中涉及的基因的转录,并且对甲基紫精的耐受性发挥更大的作用。

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