Yeast inorganic pyrophosphatase. A model for active-site structure based on cadmium-113 and phosphorus-31 NMR studies
Author:
Publisher
American Chemical Society (ACS)
Subject
Biochemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/bi00316a019
Reference39 articles.
1. Effect of halide complexation of cadmium(II) on cadmium-113 chemical shifts
2. Electron paramagnetic resonance studies of Mn(II)Mn(II) interaction in yeast inorganic pyrophosphatase
3. Identification of an arginine important for enzymic activity within the covalent structure of yeast inorganic pyrophosphatase
4. Covalent structural analysis of yeast inorganic pyrophosphatase.
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1. Use of 113Cd NMR to Probe the Native Metal Binding Sites in Metalloproteins: An Overview;Cadmium: From Toxicity to Essentiality;2012-11-03
2. Cd2+-induced aggregation of Escherichia coli pyrophosphatase;European Journal of Biochemistry;2004-06-28
3. Direct determination of quadrupolar and dipolar NMR correlation times from spin-lattice and spin-spin relaxation rates;CONCEPT MAGNETIC RES;1999
4. Direct Determination of Quadrupolar and Dipolar NMR Correlation Times from Spin-Lattice and Spin-Spin Relaxation Rates;Concepts in Magnetic Resonance;1999
5. Direct Determination of NMR Correlation Times from Spin−Lattice and Spin−Spin Relaxation Times;The Journal of Physical Chemistry A;1997-05-01
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