Julian A. Peterson

Affiliations: 
Biochemistry University of Texas Southwestern Medical Center at Dallas, Dallas, TX, United States 
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Davydov DR, Ponomarev GV, Bobrovnikova-Marjon E, et al. (2013) Aluminum-substituted heme domain of P450BM-3 (BMP): introducing a heme-derived fluorescent probe for studies of substrate binding and protein-protein interactions in cytochromes P450. Biotechnology and Applied Biochemistry. 60: 41-51
Haines DC, Hegde A, Chen B, et al. (2011) A single active-site mutation of P450BM-3 dramatically enhances substrate binding and rate of product formation. Biochemistry. 50: 8333-41
Haines DC, Chen B, Tomchick DR, et al. (2008) Crystal structure of inhibitor-bound P450BM-3 reveals open conformation of substrate access channel. Biochemistry. 47: 3662-70
Chowdhary PK, Keshavan N, Nguyen HQ, et al. (2007) Bacillus megaterium CYP102A1 oxidation of acyl homoserine lactones and acyl homoserines. Biochemistry. 46: 14429-37
Hegde A, Haines DC, Bondlela M, et al. (2007) Interactions of substrates at the surface of P450s can greatly enhance substrate potency. Biochemistry. 46: 14010-7
Kitazume T, Haines DC, Estabrook RW, et al. (2007) Obligatory intermolecular electron-transfer from FAD to FMN in dimeric P450BM-3. Biochemistry. 46: 11892-901
Mast N, Murtazina D, Liu H, et al. (2006) Distinct binding of cholesterol and 5β-cholestane-3α,7α, 12α-triol to cytochrome P450 27A1: Evidence from modeling and site-directed mutagenesis studies Biochemistry. 45: 4396-4404
Kalaany NY, Gauthier KC, Zavacki AM, et al. (2005) LXRs regulate the balance between fat storage and oxidation. Cell Metabolism. 1: 231-44
Mast N, Graham SE, Andersson U, et al. (2005) Cholesterol binding to cytochrome P450 7A1, a key enzyme in bile acid biosynthesis Biochemistry. 44: 3259-3271
Kariakin A, Davydov D, Peterson JA, et al. (2002) A new approach to the study of protein-protein interaction by FTIR: complex formation between cytochrome P450BM-3 heme domain and FMN reductase domain. Biochemistry. 41: 13514-25
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