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Biotechnol Bioeng. 1996 Aug 20;51(4):410-21
Authors: Hancock TJ, Hsu JT
The reversible folding destabilization of hen lysozyme has been confirmed by a melting temperature (T(m)) decrease in aqueous poly(ethylene glycol) (PEG). The percent denatured, extracted from the histidine 15 C2H (H15 C2H) native and denatured peak areas from 500-MHz one-dimensional proton nuclear magnetic resonance (1D (1)H NMR) spectra in D(2)O, was analyzed through denaturation temperatures at 0% and 20% (w/w) PEG 1000. The lysozyme (3.5 mM) T(m) decreased by 4.2 degrees C and 7.1 degrees C in 20% (w/w) PEG 1000 at pH 3.8 and 3.0, respectively. The T(m) decreased with increasing lysozyme concentration. Additionally, the temperature-induced resonance migrations of 17 protons from 8 residues indicate that the native lysozyme structure undergoes temperature-induced conformational changes. The changes were essentially identical in both 0% and 20% (w/w) PEG 1000 at both pH 3.0 and 3.8. This small, local restructuring of the hydrophobic box region may be a manifestation of temperature-dependent solution hydrophobicity, whereas active-site cleft fluctuations may be due to the inherent active-site flexibility. The lysozyme structure in PEG at 35 degrees C was determined to be essentially native from the (1)H nuclear Overhauser effect spectroscopy (NOESY) fingerprint regions. Additionally, lysozyme chemical shifts, from 1D spectra, in PEG 200, 300, and 1000 at 35 degrees C and various concentrations were essentially identical, further confirming that the conformation remains native in various PEG solutions. (c) 1996 John Wiley & Sons, Inc.
[NMR paper] Contribution of the multi-turn segment in the reversible thermal stability of hyperth
Contribution of the multi-turn segment in the reversible thermal stability of hyperthermophile rubredoxin: NMR thermal chemical exchange analysis of sequence hybrids.
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Biophys Chem. 2005 Jun 1;116(1):57-65
Authors: LeMaster DM, Tang J, Paredes DI, Hernández G
Pyrococcus furiosus (Pf) rubredoxin is the most thermostable protein characterized to date. Reflecting the...
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[NMR paper] Influence of pH on NMR structure and stability of the human prion protein globular do
Influence of pH on NMR structure and stability of the human prion protein globular domain.
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J Biol Chem. 2003 Sep 12;278(37):35592-6
Authors: Calzolai L, Zahn R
The NMR structure of the globular domain of the human prion protein (hPrP) with residues 121-230 at pH 7.0 shows the same global fold as the previously published structure determined at pH 4.5. It contains three alpha-helices, comprising residues 144-156, 174-194, and 200-228, and...
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[NMR paper] Thermal stability of calmodulin and mutants studied by (1)H-(15)N HSQC NMR measuremen
Thermal stability of calmodulin and mutants studied by (1)H-(15)N HSQC NMR measurements of selectively labeled Ile proteins.
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Biochemistry. 2002 May 28;41(21):6850-9
Authors: Biekofsky RR, Martin SR, McCormick JE, Masino L, Fefeu S, Bayley PM, Feeney J
Calmodulin, the Ca(2+)-dependent activator of many cellular processes, contains two well-defined structural domains, each of which binds two Ca(2+) ions....
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[NMR paper] NMR relaxation studies of the role of conformational entropy in protein stability and
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Acc Chem Res. 2001 May;34(5):379-88
Authors: Stone MJ
Recent advances in the measurement and analysis of protein NMR relaxation data have made it possible to characterize the dynamical properties of many backbone and side chain groups. With certain caveats, changes in flexibility that occur upon ligand binding, mutation, or...
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[NMR paper] Mechanisms for the enhanced thermal stability of a mutant of transcription factor 1 a
Mechanisms for the enhanced thermal stability of a mutant of transcription factor 1 as explained by (1)H, (15)N and (13)C NMR chemical shifts and secondary structure analysis.
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Biochim Biophys Acta. 2000 Mar 16;1478(1):113-24
Authors: Vu HM, Liu W, Grove A, Geiduschek EP, Kearns DR
A variant of the bacteriophage SPO1-encoded transcription factor 1 (TF1)...
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[NMR paper] NMR studies of lantibiotics. The structure of nisin in aqueous solution.
NMR studies of lantibiotics. The structure of nisin in aqueous solution.
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Eur J Biochem. 1991 Dec 18;202(3):1181-8
Authors: Van de Ven FJ, Van den Hooven HW, Konings RN, Hilbers CW
Nisin is a posttranslationally modified protein of 34 amino acids, and is a member of the class of bacteriocidal polypeptides known...
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[NMR paper] NMR studies of lantibiotics. The structure of nisin in aqueous solution.
NMR studies of lantibiotics. The structure of nisin in aqueous solution.
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Eur J Biochem. 1991 Dec 18;202(3):1181-8
Authors: Van de Ven FJ, Van den Hooven HW, Konings RN, Hilbers CW
Nisin is a posttranslationally modified protein of 34 amino acids, and is a member of the class of bacteriocidal polypeptides known...
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[NMR paper] Two-dimensional NMR studies and secondary structure of cobrotoxin in aqueous solution
Two-dimensional NMR studies and secondary structure of cobrotoxin in aqueous solution.
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Eur J Biochem. 1990 Nov 13;193(3):789-99
Authors: Yu C, Lee CS, Chuang LC, Shei YR, Wang CY
The 1H-NMR spectra of cobrotoxin, a neurotoxic protein isolated from Formosan cobra Naja naja atra, have been studied by...