The study of long-range ET has attained a central role in modern chemistry through the development of (i) linked donor-acceptor model compounds; (ii) redox-modified proteins; and, the focus of our research, (iii) modified protein-protein complexes. Our program addresses the two fundamental and complementary questions underlying the critical process of inter-protein electron-transfer (ET), through studies of three experimental systems: What are the structural and dynamical features that control interfacial recognition and docking between ET partners? What are the structural, dynamical, and energetic features that control the actual electron-transfer event within the protein-protein complex? Mixed-metal hemoglobin (Hb) hybrids provide an unmatched opportunity to study the ET event within a 'pre-docked' complex, across a crystallographically defined, experimentally manipulable protein-protein (inter-subunit) interface. Cytochrome c Peroxidase (CcP) is the paradigm of a protein with multiple, interacting redox centers and multiple binding domains for reacting with its ET partner, cytochrome c (Cc). The physiologically important ET complexes of cytochrome b5 (b5) with myoglobin (Mb) and Hb present complementary issues: The [Mb, b5] system of low molecular weight partners raises fundamental issues of interfacial recognition and docking; the [Hb, b5] pair offers the opportunity to probe the coupling of ET to quaternary assembly and conformation of a multi-subunit protein.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
1R01HL063203-01
Application #
2835018
Study Section
Metallobiochemistry Study Section (BMT)
Project Start
1999-03-15
Project End
2003-02-28
Budget Start
1999-03-15
Budget End
2000-02-29
Support Year
1
Fiscal Year
1999
Total Cost
Indirect Cost
Name
Northwestern University at Chicago
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
City
Evanston
State
IL
Country
United States
Zip Code
60201
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Chen, Lin X; Shelby, Megan L; Lestrange, Patrick J et al. (2016) Imaging ultrafast excited state pathways in transition metal complexes by X-ray transient absorption and scattering using X-ray free electron laser source. Faraday Discuss 194:639-658
Danyal, Karamatullah; Shaw, Sudipta; Page, Taylor R et al. (2016) Negative cooperativity in the nitrogenase Fe protein electron delivery cycle. Proc Natl Acad Sci U S A 113:E5783-E5791
Trana, Ethan N; Nocek, Judith M; Woude, Jon Vander et al. (2016) Charge-Disproportionation Symmetry Breaking Creates a Heterodimeric Myoglobin Complex with Enhanced Affinity and Rapid Intracomplex Electron Transfer. J Am Chem Soc 138:12615-28
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Page, Taylor R; Hoffman, Brian M (2015) Control of cyclic photoinitiated electron transfer between cytochrome c peroxidase (W191F) and cytochrome c by formation of dynamic binary and ternary complexes. Biochemistry 54:1188-97
Co, Nadia Petlakh; Young, Ryan M; Smeigh, Amanda L et al. (2014) Symmetrized photoinitiated electron flow within the [myoglobin:cytochrome b?] complex on singlet and triplet time scales: energetics vs dynamics. J Am Chem Soc 136:12730-6
Duval, Simon; Danyal, Karamatullah; Shaw, Sudipta et al. (2013) Electron transfer precedes ATP hydrolysis during nitrogenase catalysis. Proc Natl Acad Sci U S A 110:16414-9
Jiang, Nan; Kuznetsov, Aleksey; Nocek, Judith M et al. (2013) Distance-independent charge recombination kinetics in cytochrome c-cytochrome c peroxidase complexes: compensating changes in the electronic coupling and reorganization energies. J Phys Chem B 117:9129-41
Mayweather, Diana; Danyal, Karamatullah; Dean, Dennis R et al. (2012) Correction to temperature invariance of the nitrogenase electron transfer mechanism. Biochemistry 51:9027

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