Insights into electron transfer and bifurcation of the Synechocystis sp. PCC6803 hydrogenase reductase module

被引:2
作者
Lettau, Elisabeth [1 ,2 ]
Lorent, Christian [2 ]
Appel, Jens [3 ]
Boehm, Marko [3 ]
Cordero, Paul R. F. [1 ]
Lauterbach, Lars [1 ]
机构
[1] Rhein Westfal TH Aachen, iAMB Inst Appl Microbiol, Worringerweg 1, D-52074 Aachen, Germany
[2] Tech Univ Berlin, Inst Chem, Str 14 Juni 135, D-10623 Berlin, Germany
[3] Univ Kassel, Mol Plant Biol, Heinrich Plett Str 40, D-34132 Kassel, Germany
来源
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS | 2025年 / 1866卷 / 01期
关键词
Synechocystis sp. PCC6803; Reductase module; HoxEFU; HoxE; Iron-sulfur protein; Ferredoxin; Electron paramagnetic resonance (EPR); Enzyme kinetics; Structure predictions; NAD(+)-reducing hydrogenase; SP PCC 6803; OXIDOREDUCTASE COMPLEX-I; NADH-UBIQUINONE OXIDOREDUCTASE; IRON-SULFUR CLUSTERS; BIDIRECTIONAL HYDROGENASE; PROTEIN-PROTEIN; SUBUNIT; SUBCOMPLEX; FERREDOXIN; PCC-6803;
D O I
10.1016/j.bbabio.2024.149508
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 NAD(+)-reducing soluble [NiFe] hydrogenase (SH) is the key enzyme for production and consumption of molecular hydrogen (H-2) in Synechocystis sp. PCC6803. In this study, we focused on the reductase module of the SynSH and investigated the structural and functional aspects of its subunits, particularly the so far elusive role of HoxE. We demonstrated the importance of HoxE for enzyme functionality, suggesting a regulatory role in maintaining enzyme activity and electron supply. Spectroscopic analysis confirmed that HoxE and HoxF each contain one [2Fe2S] cluster with an almost identical electronic structure. Structure predictions, alongside experimental evidence for ferredoxin interactions, revealed a remarkable similarity between SynSH and bifurcating hydrogenases, suggesting a related functional mechanism. Our study unveiled the subunit arrangement and cofactor composition essential for biological electron transfer. These findings enhance our understanding of NAD(+)-reducing [NiFe] hydrogenases in terms of their physiological function and structural requirements for biotechnologically relevant modifications.
引用
收藏
页数:10
相关论文
共 74 条
  • [1] Hydrogenase-based oxidative biocatalysis without oxygen
    Al-Shameri, Ammar
    Siebert, Dominik L.
    Sutiono, Samuel
    Lauterbach, Lars
    Sieber, Volker
    [J]. NATURE COMMUNICATIONS, 2023, 14 (01)
  • [2] H2as a fuel for flavin- and H2O2-dependent biocatalytic reactions
    Al-Shameri, Ammar
    Willot, Sebastien J-P
    Paul, Caroline E.
    Hollmann, Frank
    Lauterbach, Lars
    [J]. CHEMICAL COMMUNICATIONS, 2020, 56 (67) : 9667 - 9670
  • [3] Synthesis of N-heterocycles from diamines via H2-driven NADPH recycling in the presence of O2
    Al-Shameri, Ammar
    Borlinghaus, Niels
    Weinmann, Leonie
    Scheller, Philipp N.
    Nestl, Bettina M.
    Lauterbach, Lars
    [J]. GREEN CHEMISTRY, 2019, 21 (06) : 1396 - 1400
  • [4] Quantitative amino acid analysis of bovine NADH: ubiquinone oxidoreductase (Complex I) and related enzymes. Consequences for the number of prosthetic groups
    Albracht, SPJ
    van der Linden, E
    Faber, BW
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2003, 1557 (1-3): : 41 - 49
  • [5] The bidirectional hydrogenase of Synechocystis sp PCC 6803 works as an electron valve during photosynthesis
    Appel, J
    Phunpruch, S
    Steinmüller, K
    Schulz, R
    [J]. ARCHIVES OF MICROBIOLOGY, 2000, 173 (5-6) : 333 - 338
  • [6] Evidence for Electron Transfer from the Bidirectional Hydrogenase to the Photosynthetic Complex I (NDH-1) in the Cyanobacterium Synechocystis sp. PCC 6803
    Appel, Jens
    Craig, Sean
    Theune, Marius
    Hueren, Vanessa
    Kuenzel, Sven
    Forberich, Bjoern
    Bryan, Samantha
    Gutekunst, Kirstin
    [J]. MICROORGANISMS, 2022, 10 (08)
  • [7] Cyanobacterial in vivo solar hydrogen production using a photosystem I-hydrogenase (PsaD-HoxYH) fusion complex
    Appel, Jens
    Hueren, Vanessa
    Boehm, Marko
    Gutekunst, Kirstin
    [J]. NATURE ENERGY, 2020, 5 (06) : 458 - 467
  • [8] The structure and reactivity of the HoxEFU complex from the cyanobacterium Synechocystis sp. PCC 6803
    Artz, Jacob H.
    Tokmina-Lukaszewska, Monika
    Mulder, David W.
    Lubner, Carolyn E.
    Gutekunst, Kirstin
    Appel, Jens
    Bothner, Brian
    Boehm, Marko
    King, Paul W.
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2020, 295 (28) : 9445 - 9454
  • [9] Reduction Potentials of [FeFe]-Hydrogenase Accessory Iron-Sulfur Clusters Provide Insights into the Energetics of Proton Reduction Catalysis
    Artz, Jacob H.
    Mulder, David W.
    Ratzloff, Michael W.
    Lubner, Carolyn E.
    Zadvornyy, Oleg A.
    LeVan, Axl X.
    Williams, S. Garrett
    Adams, Michael W. W.
    Jones, Anne K.
    King, Paul W.
    Peters, John W.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2017, 139 (28) : 9544 - 9550
  • [10] Role of HoxE subunit in Synechocystis PCC6803 hydrogenase
    Aubert-Jousset, Emeline
    Cano, Melissa
    Guedeney, Genevieve
    Richaud, Pierre
    Cournac, Laurent
    [J]. FEBS JOURNAL, 2011, 278 (21) : 4035 - 4043