David B. Knaff

Affiliations: 
Texas Tech University, Lubbock, TX 
Area:
Biochemistry, Microbiology Biology
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"David Knaff"
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Publications

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Srivastava AP, Mishra N, Prasad RLA, et al. (2020) Thermodynamics of ferredoxin binding to cyanobacterial nitrate reductase. Photosynthesis Research
Hirasawa M, Solis J, Vaidyanathan N, et al. (2017) Identification of the ferredoxin interaction sites on ferredoxin-dependent glutamate synthase from Synechocystis sp. PCC 6803. Photosynthesis Research
Srivastava AP, Hardy EP, Allen JP, et al. (2017) Identification of the Ferredoxin-Binding Site of a Ferredoxin-Dependent Cyanobacterial Nitrate Reductase. Biochemistry
Srivastava AP, Allen JP, Vaccaro BJ, et al. (2015) Identification of Amino Acids at the Catalytic Site of a Ferredoxin-Dependent Cyanobacterial Nitrate Reductase. Biochemistry
Tripathy JN, Hirasawa M, Sutton RB, et al. (2015) A loop unique to ferredoxin-dependent glutamate synthases is not absolutely essential for ferredoxin-dependent catalytic activity. Photosynthesis Research. 123: 129-39
Srivastava AP, Knaff DB, Sétif P. (2014) Kinetic studies of a ferredoxin-dependent cyanobacterial nitrate reductase. Biochemistry. 53: 5092-101
Knaff DB, Sutton RB. (2013) Utility of Synechocystis sp. PCC 6803 glutaredoxin A as a platform to study high-resolution mutagenesis of proteins. Frontiers in Plant Science. 4: 461
Gao H, Subramanian S, Couturier J, et al. (2013) Arabidopsis thaliana Nfu2 accommodates [2Fe-2S] or [4Fe-4S] clusters and is competent for in vitro maturation of chloroplast [2Fe-2S] and [4Fe-4S] cluster-containing proteins. Biochemistry. 52: 6633-45
Srivastava AP, Hirasawa M, Bhalla M, et al. (2013) Roles of four conserved basic amino acids in a ferredoxin-dependent cyanobacterial nitrate reductase. Biochemistry. 52: 4343-53
Couturier J, Prosper P, Winger AM, et al. (2013) In the absence of thioredoxins, what are the reductants for peroxiredoxins in Thermotoga maritima? Antioxidants & Redox Signaling. 18: 1613-22
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