Donna L. Luisi, Ph.D.

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2000 Stony Brook University, Stony Brook, NY, United States 
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"Donna Luisi"
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Daniel P. Raleigh grad student 2000 SUNY Stony Brook
 (Characterization of the transition and the unfolded states of the N-terminal domain of the ribosomal protein L9.)
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Luisi DL, Snow CD, Lin JJ, et al. (2003) Surface salt bridges, double-mutant cycles, and protein stability: An experimental and computational analysis of the interaction of the Asp 23 side chain with the N-terminus of the N-terminal domain of the ribosomal protein L9 Biochemistry. 42: 7050-7060
Luisi DL, Raleigh DP. (2000) pH-dependent interactions and the stability and folding kinetics of the N-terminal domain of L9. Electrostatic interactions are only weakly formed in the transition state for folding. Journal of Molecular Biology. 299: 1091-100
Sato S, Luisi DL, Raleigh DP. (2000) pH jump studies of the folding of the multidomain ribosomal protein L9: the structural organization of the N-terminal domain does not affect the anomalously slow folding of the C-terminal domain. Biochemistry. 39: 4955-62
Luisi DL, Kuhlman B, Sideras K, et al. (1999) Effects of varying the local propensity to form secondary structure on the stability and folding kinetics of a rapid folding mixed alpha/beta protein: characterization of a truncation mutant of the N-terminal domain of the ribosomal protein L9. Journal of Molecular Biology. 289: 167-74
Kuhlman B, Luisi DL, Young P, et al. (1999) pKa values and the pH dependent stability of the N-terminal domain of L9 as probes of electrostatic interactions in the denatured state. Differentiation between local and nonlocal interactions. Biochemistry. 38: 4896-903
Luisi DL, Wu WJ, Raleigh DP. (1999) Conformational analysis of a set of peptides corresponding to the entire primary sequence of the N-terminal domain of the ribosomal protein L9: evidence for stable native-like secondary structure in the unfolded state. Journal of Molecular Biology. 287: 395-407
Kuhlman B, Luisi DL, Evans PA, et al. (1998) Global analysis of the effects of temperature and denaturant on the folding and unfolding kinetics of the N-terminal domain of the protein L9. Journal of Molecular Biology. 284: 1661-70
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