Department of Biochemistry and Molecular Biology, the Pennsylvania State University, University Park, Pennsylvania 16802, USA.
J Biol Chem. 2011 Sep 30;286(39):33973-80. doi: 10.1074/jbc.M111.262113. Epub 2011 Aug 3.
Shewanella oneidensis strain MR-1 utilizes soluble and insoluble ferric ions as terminal electron acceptors during anaerobic respiration. The components of respiratory metabolism are localized in the membrane fractions which include the outer membrane and cytoplasmic membrane. Many of the biological components that interact with the various iron forms are proposed to be localized in these membrane fractions. To identify the iron-binding proteins acting either as an iron transporter or as a terminal iron reductase, we used metal-catalyzed oxidation reactions. This system catalyzed the oxidation of amino acids in close proximity to the iron binding site. The carbonyl groups formed from this oxidation can then be labeled with fluoresceinamine (FLNH(2)). The peptide harboring the FLNH(2) can then be proteolytically digested, purified by HPLC and then identified by MALDI-TOF tandem MS. A predominant peptide was identified to be part of SO2907 that encodes a putative TonB-dependent receptor. Compared with wild type (wt), the so2907 gene deletion (ΔSO2907) mutant has impaired ability to reduce soluble Fe(III), but retains the same ability to respire oxygen or fumarate as the wt. The ΔSO2907 mutant was also impacted in reduction of insoluble iron. Iron binding assays using isothermal titration calorimetry and fluorescence tryptophan quenching demonstrated that a truncated form of heterologous-expressed SO2907 that contains the Fe(III) binding site, is capable of binding soluble Fe(III) forms with K(d) of approximate 50 μm. To the best of our knowledge, this is the first report of the physiological role of SO2907 in Fe(III) reduction by MR-1.
希瓦氏菌属 MR-1 菌株在厌氧呼吸过程中利用可溶性和不溶性的三价铁离子作为末端电子受体。呼吸代谢的成分定位于膜部分,包括外膜和细胞质膜。许多与各种铁形式相互作用的生物成分被认为定位于这些膜部分。为了鉴定作为铁转运蛋白或末端铁还原酶起作用的铁结合蛋白,我们使用了金属催化氧化反应。该系统催化靠近铁结合位点的氨基酸氧化。然后可以用荧光胺 (FLNH(2)) 标记由此氧化形成的羰基。含有 FLNH(2)的肽然后可以进行蛋白水解消化,通过 HPLC 纯化,然后通过 MALDI-TOF 串联 MS 鉴定。鉴定出一个主要的肽是编码推定的 TonB 依赖性受体的 SO2907 的一部分。与野生型 (wt) 相比,so2907 基因缺失 (ΔSO2907) 突变体还原可溶性 Fe(III) 的能力受损,但与 wt 相比,呼吸氧气或延胡索酸盐的能力相同。ΔSO2907 突变体在还原不溶性铁方面也受到影响。使用等温滴定量热法和荧光色氨酸猝灭的铁结合测定表明,含有 Fe(III)结合位点的异源表达 SO2907 的截断形式能够与 K(d)约为 50 μm 的可溶性 Fe(III)形式结合。据我们所知,这是首次报道 SO2907 在 MR-1 还原 Fe(III)中的生理作用。