...
首页> 外文期刊>The Journal of biological chemistry >Structural and functional characterization of IdiA/FutA (Tery_3377), an iron-binding protein from the ocean diazotroph Trichodesmium erythraeum
【24h】

Structural and functional characterization of IdiA/FutA (Tery_3377), an iron-binding protein from the ocean diazotroph Trichodesmium erythraeum

机译:IdiA / FutA(Tery_3377)的结构和功能表征,IdiA / FutA是一种来自海洋重氮营养性红细菌Trichodesmium erythraeum的铁结合蛋白

获取原文

摘要

Atmospheric nitrogen fixation by photosynthetic cyanobacteria (diazotrophs) strongly influences oceanic primary production and in turn affects global biogeochemical cycles. Species of the genus Trichodesmium are major contributors to marine diazotrophy, accounting for a significant proportion of the fixed nitrogen in tropical and subtropical oceans. However, Trichodesmium spp. are metabolically constrained by the availability of iron, an essential element for both the photosynthetic apparatus and the nitrogenase enzyme. Survival strategies in low-iron environments are typically poorly characterized at the molecular level, because these bacteria are recalcitrant to genetic manipulation. Here, we studied a homolog of the iron deficiency-induced A (IdiA)/ferric uptake transporter A (FutA) protein, Tery_3377, which has been used as an in situ iron-stress biomarker. IdiA/FutA has an ambiguous function in cyanobacteria, with its homologs hypothesized to be involved in distinct processes depending on their cellular localization. Using signal sequence fusions to GFP and heterologous expression in the model cyanobacterium Synechocystis sp. PCC 6803, we show that Tery_3377 is targeted to the periplasm by the twin-arginine translocase and can complement the deletion of the native Synechocystis ferric-iron ABC transporter periplasmic binding protein (FutA2). EPR spectroscopy revealed that purified recombinant Tery_3377 has specificity for iron in the Fe3+ state, and an X-ray crystallography–determined structure uncovered a functional iron substrate–binding domain, with Fe3+ pentacoordinated by protein and buffer ligands. Our results support assignment of Tery_3377 as a functional FutA subunit of an Fe3+ ABC transporter but do not rule out dual IdiA function.
机译:光合蓝细菌(固氮菌)在大气中固氮的能力强烈影响海洋的初级生产,进而影响全球的生物地球化学循环。 Trichodesmium属的物种是海洋重氮营养的主要贡献者,在热带和亚热带海洋中占固定氮的很大比例。但是,Trichodesmium spp。铁的代谢限制了铁的含量,铁是光合作用和固氮酶的必需元素。在低铁环境中的生存策略通常在分子水平上缺乏明确的特征,因为这些细菌难以进行基因操作。在这里,我们研究了铁缺乏诱导的A(IdiA)/铁摄取转运蛋白A(FutA)蛋白Tery_3377的同源物,该蛋白已被用作原位铁胁迫生物标记。 IdiA / FutA在蓝细菌中具有模棱两可的功能,其同源物被认为根据其细胞定位参与不同的过程。使用信号序列融合到GFP和异源表达在模型蓝藻Synechocystis sp。 PCC 6803,我们显示Tery_3377通过双精氨酸转位酶靶向周质,并且可以补充天然Synychocystis铁-铁ABC转运蛋白周质结合蛋白(FutA2)的缺失。 EPR光谱显示纯化的重组Tery_3377对Fe3 +态的铁具有特异性,并且X射线晶体学确定的结构揭示了功能性的铁底物结合域,Fe3 +被蛋白质和缓冲配体配位。我们的结果支持将Tery_3377分配为Fe3 + ABC转运蛋白的功能性FutA亚基,但不排除双重IdiA功能。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号