Bharati Mitra

Affiliations: 
Biochemistry and Molecular Biology Wayne State University, Detroit, MI, United States 
Area:
General Biophysics, Molecular Biology
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"Bharati Mitra"
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Publications

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Roberts CS, Muralidharan S, Ni F, et al. (2020) Structural Role of the First Four Transmembrane Helices in ZntA, a P-Type ATPase from . Biochemistry
Sukumar N, Liu S, Li W, et al. (2018) Structure of the monotopic membrane protein (S)-mandelate dehydrogenase at 2.2Å resolution. Biochimie
Neslund-Dudas C, Mitra B, Kandegedara A, et al. (2012) Association of metals and proteasome activity in erythrocytes of prostate cancer patients and controls. Biological Trace Element Research. 149: 5-9
Sukumar N, Dewanti A, Merli A, et al. (2009) Structures of the G81A mutant form of the active chimera of (S)-mandelate dehydrogenase and its complex with two of its substrates. Acta Crystallographica. Section D, Biological Crystallography. 65: 543-52
Dutta SJ, Liu J, Stemmler AJ, et al. (2007) Conservative and nonconservative mutations of the transmembrane CPC motif in ZntA: effect on metal selectivity and activity. Biochemistry. 46: 3692-703
Dutta SJ, Liu J, Hou Z, et al. (2006) Conserved aspartic acid 714 in transmembrane segment 8 of the ZntA subgroup of P1B-type ATPases is a metal-binding residue. Biochemistry. 45: 5923-31
Liu J, Dutta SJ, Stemmler AJ, et al. (2006) Metal-binding affinity of the transmembrane site in ZntA: implications for metal selectivity. Biochemistry. 45: 763-72
Dutta SJ, Liu J, Mitra B. (2005) Kinetic analysis of metal binding to the amino-terminal domain of ZntA by monitoring metal-thiolate charge-transfer complexes. Biochemistry. 44: 14268-74
Liu J, Stemmler AJ, Fatima J, et al. (2005) Metal-binding characteristics of the amino-terminal domain of ZntA: binding of lead is different compared to cadmium and zinc. Biochemistry. 44: 5159-67
Dewanti AR, Xu Y, Mitra B. (2004) Role of glycine 81 in (S)-mandelate dehydrogenase from Pseudomonas putida in substrate specificity and oxidase activity. Biochemistry. 43: 10692-700
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