Protein dynamics and the all-ferrous [Fe4S4] cluster in the nitrogenase iron protein

被引:7
作者
Tan, Ming-Liang [1 ]
Perrin, B. Scott, Jr. [2 ]
Niu, Shuqiang [1 ]
Huang, Qi [1 ]
Ichiye, Toshiko [1 ,2 ]
机构
[1] Georgetown Univ, Dept Chem, Washington, DC 20057 USA
[2] NHLBI, Lab Computat Biol, NIH, Bldg 10, Bethesda, MD 20892 USA
基金
美国国家卫生研究院;
关键词
reduction potentials; elastic network mode analysis; metalloprotein; iron-sulfur proteins; DENSITY-FUNCTIONAL THEORY; VINELANDII FE PROTEIN; AZOTOBACTER-VINELANDII; REDUCTION POTENTIALS; NUCLEOTIDE-BINDING; 4FE-4S CLUSTER; REDOX STATE; MOSSBAUER; RESONANCE; ENERGY;
D O I
10.1002/pro.2772
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
In nitrogen fixation by Azotobacter vinelandii nitrogenase, the iron protein (FeP) binds to and subsequently transfers electrons to the molybdenum-FeP, which contains the nitrogen fixation site, along with hydrolysis of two ATPs. However, the nature of the reduced state cluster is not completely clear. While reduced FeP is generally thought to contain an [Fe4S4](1+) cluster, evidence also exists for an all-ferrous [Fe4S4](0) cluster. Since the former indicates a single electron is transferred per two ATPs hydrolyzed while the latter indicates two electrons could be transferred per two ATPs hydrolyzed, an all-ferrous [Fe4S4](0) cluster in FeP is potenially two times more efficient. However, the 1+/0 reduction potential has been measured in the protein at both 460 and 790 mV, causing the biological significance to be questioned. Here, "density functional theory plus Poisson Boltzmann" calculations show that cluster movement relative to the protein surface observed in the crystal structures could account for both measured values. In addition, elastic network mode analysis indicates that such movement occurs in low frequency vibrations of the protein, implying protein dynamics might lead to variations in reduction potential. Furthermore, the different reductants used in the conflicting measurements of the reduction potential could be differentially affecting the protein dynamics. Moreover, even if the all-ferrous cluster is not the biologically relevant cluster, mutagenesis to stabilize the conformation with the more exposed cluster may be useful for bioengineering more efficient enzymes.
引用
收藏
页码:12 / 18
页数:7
相关论文
共 50 条
  • [21] Synthesis of an All-Ferric Cuboidal Iron-Sulfur Cluster [FeIII4S4(SAr)4]
    Moula, Golam
    Matsumoto, Tsuyoshi
    Miehlich, Matthias E.
    Meyer, Karsten
    Tatsumi, Kazuyuki
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2018, 57 (36) : 11594 - 11597
  • [22] Formation, Spectroscopic Characterization, and Solution Stability of an [Fe4S4]2+ Cluster Derived frorn β-Cyclodextrin Dithiolate
    Lo, Wayne
    Zhang, Ping
    Ling, Chang-Chun
    Huang, Shaw
    Holm, R. H.
    INORGANIC CHEMISTRY, 2012, 51 (18) : 9883 - 9892
  • [23] Probing the structural, electronic and magnetic properties of multicenter Fe2S2 0/-, Fe3S4 0/- and Fe4S4 0/- clusters
    Ding, Li-Ping
    Kuang, Xiao-Yu
    Shao, Peng
    Zhong, Ming-Min
    JOURNAL OF MOLECULAR MODELING, 2013, 19 (04) : 1527 - 1536
  • [24] Electronic structures of a [4Fe-4S] cluster, [Fe4S4(SCH3)3(CH3COO)], in dark-operative protochlorophyllide oxidoreductase (DPOR)
    Takano, Yu
    Yonezawa, Yasushige
    Fujita, Yuichi
    Kurisu, Genji
    Nakamura, Haruki
    CHEMICAL PHYSICS LETTERS, 2011, 503 (4-6) : 296 - 300
  • [25] ISCA1 is essential for mitochondrial Fe4S4 biogenesis in vivo
    Beilschmidt, Lena Kristina
    de Choudens, Sandrine Ollagnier
    Fournier, Marjorie
    Sanakis, Ioannis
    Hograindleur, Marc-Andre
    Clemancey, Martin
    Blondin, Genevieve
    Schmucker, Stephane
    Eisenmann, Aurelie
    Weiss, Amelie
    Koebel, Pascale
    Messaddeq, Nadia
    Puccio, Helene
    Martelli, Alain
    NATURE COMMUNICATIONS, 2017, 8
  • [26] Interaction of the Streptomyces Wbl protein WhiD with the principal sigma factor σHrdBdepends on the WhiD [4Fe-4S] cluster
    Stewart, Melissa Y. Y.
    Bush, Matthew J.
    Crack, Jason C.
    Buttner, Mark J.
    Le Brun, Nick E.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2020, 295 (28) : 9752 - 9765
  • [27] The [4Fe-4S]-cluster coordination of [FeFe]-hydrogenase maturation protein HydF as revealed by EPR and HYSCORE spectroscopies
    Berto, Paola
    Di Valentin, Marilena
    Cendron, Laura
    Vallese, Francesca
    Albertini, Marco
    Salvadori, Enrico
    Giacometti, Giorgio M.
    Carbonera, Donatella
    Costantini, Paola
    BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2012, 1817 (12): : 2149 - 2157
  • [28] Dendritically Encapsulated, Water-Soluble Fe4S4: Synthesis and Electrochemical Properties
    Sharma, Anil K.
    Kim, Namjin
    Cameron, Christopher S.
    Lyndon, Matthew
    Gorman, Christopher B.
    INORGANIC CHEMISTRY, 2010, 49 (11) : 5072 - 5078
  • [29] Key Piece in the Wolfe Cycle of Methanogenesis: The S-S Bond Dissociation Conducted by Noncubane [Fe4S4] Cluster-Dependent Heterodisulfide Reductase
    Wu, Jue
    Chen, Shi-Lu
    ACS CATALYSIS, 2022, 12 (04) : 2606 - 2622
  • [30] From Synthetic to Biological Fe4S4 Complexes: Redox Properties Correlated to Function of Radical S-Adenosylmethionine Enzymes
    Bim, Daniel
    Alonso-Gil, Santiago
    Srnec, Martin
    CHEMPLUSCHEM, 2020, 85 (11): : 2534 - 2541