College of Life Sciences, and Hubei Key Laboratory of Genetic Regulation and Integrative Biology, Central China Normal University, Wuhan 430079 Hubei, PR China.
Plant Cell Physiol. 2012 Aug;53(8):1404-17. doi: 10.1093/pcp/pcs086. Epub 2012 Jun 7.
Cyanobacteria are known to survive in iron-deficient environments, but the ways in which they acquire Fe and acclimate are not completely understood. Here we report a novel gene sll1263 that is required for Synechocystis sp. strain PCC 6803 to grow under iron-deficient conditions. sll1263 encodes a putative cation diffusion facilitator protein (CDF) that shows 50% amino acid similarity with ferrous iron efflux protein (FieF) of heterotrophic bacteria. In bacteria, the gene product is involved in metal export from the cell, but in Synechocystis sll1263 plays a role in iron uptake. The results show that expression of sll1263 was induced by iron-deficient conditions and its inactivation significantly decreased the growth rate of an sll1263(-) mutant. Other genes known to be required for Fe acquisition were also strongly up-regulated in the mutant even in the presence of high Fe. Overexpression of sll1263 increased growth under iron deficiency but reduced growth under high-iron stress, suggesting that the gene product was involved in iron uptake rather than detoxification. Expression of FieF in the sll1263(-) mutant was unable to rescue the Fe-deficient phenotype, but Sll1263 completely restored it. Measurements of cellular iron content and the iron uptake rate showed that they were significantly less in the sll1263(-) mutant than in the wild type, consistent with a role for sll1263 in iron uptake. We hypothesize that the low-iron habitats and high-iron requirements of cyanobacteria may be the reason why cyanobacterial CDF protein functions in Fe uptake and not efflux as in non-photosynthetic bacteria.
蓝藻能够在缺铁环境中生存,但它们获取铁和适应环境的方式尚未完全理解。在这里,我们报告了一个新的基因 sll1263,它是 Synechocystis sp. 株 PCC 6803 在缺铁条件下生长所必需的。sll1263 编码一个假定的阳离子扩散促进蛋白(CDF),与异养细菌的亚铁流出蛋白(FieF)有 50%的氨基酸相似性。在细菌中,该基因产物参与金属从细胞内的输出,但在 Synechocystis 中,sll1263 则在铁的摄取中发挥作用。结果表明,sll1263 的表达受缺铁条件诱导,其失活显著降低了 sll1263(-)突变体的生长速率。即使在高铁存在的情况下,其他已知参与铁获取的基因也在突变体中强烈上调。sll1263 的过表达增加了铁缺乏条件下的生长,但降低了高铁胁迫下的生长,表明该基因产物参与了铁的摄取,而不是解毒。在 sll1263(-)突变体中表达 FieF 不能挽救缺铁表型,但 Sll1263 完全恢复了它。细胞铁含量和铁摄取率的测量表明,突变体中的铁含量和铁摄取率明显低于野生型,这与 sll1263 在铁摄取中的作用一致。我们假设蓝藻的低铁生境和高铁需求可能是蓝藻 CDF 蛋白在铁摄取中而不是在非光合细菌中发挥作用的原因。