The broad objective of the proposed research is the elucidation of the pathways of formation, the structural, electronic, and reactivity properties, and the physiological functions of the metal-containing coordination sites of iron-sulfur proteins and enzymes. The methodology is that of the synthetic analogue approach to the active sites of metallobiomolecules, whereby low molecular weight site representations are prepared and their properties scrutinized at the small molecule level of detail. These problems will be undertaken: (1) synthesis of cyclic polythiol ligands designed to stabilize certain core structures and oxidation levels. [Fe-mS-n]z, (2) synthesis and characterization of [Fe2S2]1+ and [Fe4S4]3+ clusters in order to determine detailed structures and electron delocalization properties; (3) synthesis and characterization of the trinuclear clusters [Fe3S4]1+,O with the main intentions of providing a structure proof for protein Fe3S4 clusters and examining cluster reconstitution reactions, (4) synthesis of double-cubane clusters for the purpose of assessing intramolecular electronic interactions; (5) synthesis and characterization of Fe4S4 clusters specifically functionalized at one ligand site; (6) elucidation of the reaction sequence leading to the formation of the reduced ferredoxin analogues [Fe4S4(SR)4]3-, (7) definition of the intrinsic core structural change accompanying the biologically pervasive [Fe4S4]2+,1+ electron transfer reaction; (8) development of a structural and functional model of the active sites of sulfite and nitrite reductase, including examination of reduced substrate intermediates by synthesis, (9) synthesis and characterization of complexes containing the [Fe2S]3+,4+,5+ bridge unit similar to that in sulfidohemerythrin; (10) continued development of metal-thiolate chemistry, with emphasis on the geometrical and electronic structures and reactivities of [M(SR)4]1-,2- and [M2(SR)6]2- species.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM028856-09
Application #
3276216
Study Section
Metallobiochemistry Study Section (BMT)
Project Start
1980-07-01
Project End
1991-06-30
Budget Start
1988-07-01
Budget End
1989-06-30
Support Year
9
Fiscal Year
1988
Total Cost
Indirect Cost
Name
Harvard University
Department
Type
Schools of Arts and Sciences
DUNS #
071723621
City
Cambridge
State
MA
Country
United States
Zip Code
02138
Lee, Sonny C; Lo, Wayne; Holm, R H (2014) Developments in the biomimetic chemistry of cubane-type and higher nuclearity iron-sulfur clusters. Chem Rev 114:3579-600
Troeppner, O; Huang, D; Holm, R H et al. (2014) Thermodynamics and high-pressure kinetics of a fast carbon dioxide fixation reaction by a (2,6-pyridinedicarboxamidato-hydroxo)nickel(II) complex. Dalton Trans 43:5274-9
Tan, Lay Ling; Holm, R H; Lee, Sonny C (2013) Structural Analysis of Cubane-Type Iron Clusters. Polyhedron 58:206-217
Lo, Wayne; Zhang, Ping; Ling, Chang-Chun et al. (2012) Formation, spectroscopic characterization, and solution stability of an [Fe4S4]2+ cluster derived from ýý-cyclodextrin dithiolate. Inorg Chem 51:9883-92
Zheng, Bo; Chen, Xu-Dong; Zheng, Shao-Liang et al. (2012) Selenium as a structural surrogate of sulfur: template-assisted assembly of five types of tungsten-iron-sulfur/selenium clusters and the structural fate of chalcogenide reactants. J Am Chem Soc 134:6479-90
Zhang, Xiaofeng; Huang, Deguang; Chen, Yu-Sheng et al. (2012) Synthesis of binucleating macrocycles and their nickel(II) hydroxo- and cyano-bridged complexes with divalent ions: anatomical variation of ligand features. Inorg Chem 51:11017-29
Majumdar, Amit; Holm, R H (2011) Specific incorporation of chalcogenide bridge atoms in molybdenum/tungsten-iron-sulfur single cubane clusters. Inorg Chem 50:11242-51
Lo, Wayne; Scott, Thomas A; Zhang, Ping et al. (2011) Stabilities of cubane type [FeýýýSýýý(SR)ýýý](2-) clusters in partially aqueous media. J Inorg Biochem 105:497-508
Xi, Bin; Holm, R H (2011) The [MoFe3S4]2+ oxidation state: synthesis, substitution reactions, and structures of phosphine-ligated cubane-type clusters with the S=2 ground state. Inorg Chem 50:6280-8
Huang, Deguang; Makhlynets, Olga V; Tan, Lay Ling et al. (2011) Kinetics and mechanistic analysis of an extremely rapid carbon dioxide fixation reaction. Proc Natl Acad Sci U S A 108:1222-7

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