Molecular interactions between Geobacter sulfurreducens triheme cytochromes and the redox active analogue for humic substances

被引:9
|
作者
Dantas, Joana M. [1 ]
Ferreira, Marisa R. [1 ]
Catarino, Teresa [2 ,3 ]
Kokhan, Oleksandr [4 ]
Pokkuluri, P. Raj [5 ]
Salgueiro, Carlos A. [1 ]
机构
[1] Univ Nova Lisboa, Fac Ciencias & Tecnol, Dept Quim, UCIBIO Requimte, Campus Caparica, P-2829516 Caparica, Portugal
[2] Univ Nova Lisboa, Inst Tecnol Quim & Biol Antonio Xavier, Av Republ EAN, P-2780157 Oeiras, Portugal
[3] Univ Nova Lisboa, FCT, Fac Ciencias & Tecnol, Dept Quim, P-2829516 Caparica, Portugal
[4] James Madison Univ, Dept Chem & Biochem, Harrisonburg, VA 22807 USA
[5] Argonne Natl Lab, Biosci Div, Lemont, IL 60439 USA
来源
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS | 2018年 / 1859卷 / 08期
关键词
Geobacter; Humic substances; AQDS; Multiheme cytochromes; NMR; Electron transfer; C-TYPE CYTOCHROME; ELECTRON-ACCEPTORS; ELECTROCHEMICAL CHARACTERIZATION; MEMBRANE CYTOCHROME; FE(III) CITRATE; OUTER-MEMBRANE; REDUCTION; PPCA; FAMILY; ACID;
D O I
10.1016/j.bbabio.2018.05.007
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The bacterium Geobacter sulfurreducens can transfer electrons to quinone moieties of humic substances or to anthraquinone-2,6-disulfonate (AQDS), a model for the humic acids. The reduced form of AQDS (AH(2)QDS) can also be used as energy source by G. sulfurreducens. Such bidirectional utilization of humic substances confers competitive advantages to these bacteria in Peale enriched environments. Previous studies have shown that the triheme cytochrome PpcA from G. sulfurreducens has a bifunctional behavior toward the humic substance analogue. It can reduce AQDS but the protein can also be reduced by AH(2)QDS. Using stopped-flow kinetic measurements we were able to demonstrate that other periplasmic members of the PpcA-family in G. sulfurreducens (PpcB, PpcD and PpcE) also showed the same behavior. The extent of the electron transfer is thermodynamically controlled favoring the reduction of the cytochromes. NMR spectra recorded for C-13,N-15-enriched samples in the presence increasing amounts of AQDS showed perturbations in the chemical shift signals of the cytochromes. The chemical shift perturbations on cytochromes backbone NH and H-1 heme methyl signals were used to map their interaction regions with AQDS, showing that each protein forms a low-affinity binding complex through well-defined positive surface regions in the vicinity of heme IV (PpcB, PpcD and PpcE) and I (PpcE). Docking calculations performed using NMR chemical shift perturbations allowed modeling the interactions between AQDS and each cytochrome at a molecular level. Overall, the results obtained provided important structural functional relationships to rationalize the microbial respiration of humic substances in G. sulfurreducens.
引用
收藏
页码:619 / 630
页数:12
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