Genetics & Experimental Bioinformatics, Institute of Biology III, Faculty of Biology, University of Freiburg, Schänzlestrasse 1, 79104 Freiburg, Germany.
Molecular Plant Biology, Department of Biochemistry, University of Turku, 20014 Turku, Finland.
Curr Biol. 2017 May 22;27(10):1425-1436.e7. doi: 10.1016/j.cub.2017.04.010. Epub 2017 May 4.
Oxygenic photosynthesis crucially depends on proteins that possess Fe or Fe/S complexes as co-factors or prosthetic groups. Here, we show that the small regulatory RNA (sRNA) IsaR1 (Iron-Stress-Activated RNA 1) plays a pivotal role in acclimation to low-iron conditions. The IsaR1 regulon consists of more than 15 direct targets, including Fe-containing proteins involved in photosynthetic electron transfer, detoxification of anion radicals, citrate cycle, and tetrapyrrole biogenesis. IsaR1 is essential for maintaining physiological levels of Fe/S cluster biogenesis proteins during iron deprivation. Consequently, IsaR1 affects the acclimation of the photosynthetic apparatus to iron starvation at three levels: (1) directly, via posttranscriptional repression of gene expression; (2) indirectly, via suppression of pigment; and (3) Fe/S cluster biosynthesis. Homologs of IsaR1 are widely conserved throughout the cyanobacterial phylum. We conclude that IsaR1 is a critically important riboregulator. These findings provide a new perspective for understanding the regulation of iron homeostasis in photosynthetic organisms.
需氧光合作用关键依赖于含有铁或铁/硫复合物作为辅因子或辅基的蛋白质。在这里,我们表明,小调控 RNA(sRNA)IsaR1(铁胁迫激活 RNA 1)在适应低铁条件中起着关键作用。IsaR1 调控物由 15 个以上的直接靶标组成,包括参与光合作用电子传递、阴离子自由基解毒、柠檬酸循环和四吡咯生物合成的含铁蛋白。在缺铁时,IsaR1 对于维持铁硫簇生物发生蛋白的生理水平是必需的。因此,IsaR1 通过以下三种方式影响光合作用装置对铁饥饿的适应:(1)直接通过基因表达的转录后抑制;(2)间接通过抑制色素;和(3)铁/硫簇生物合成。IsaR1 的同源物在整个蓝细菌门中广泛保守。我们得出结论,IsaR1 是一个至关重要的核糖开关调节剂。这些发现为理解光合生物中铁稳态的调节提供了新的视角。