FOLDING OF RIBONUCLEASE-A FROM A PARTIALLY DISORDERED CONFORMATION - KINETIC-STUDY UNDER TRANSITION CONDITIONS
FOLDING OF RIBONUCLEASE-A FROM A PARTIALLY DISORDERED CONFORMATION - KINETIC-STUDY UNDER TRANSITION CONDITIONS
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DOI:
10.1021/bi00306a023
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发表时间:
1984-01-01
期刊:
影响因子:
2.9
通讯作者:
SCHERAGA, HA
中科院分区:
文献类型:
--
作者:
LYNN, RM;KONISHI, Y;SCHERAGA, HA
Bovine pancreatic RNase A, denatured by 3.5 M LiClO4 (pH 3.0), has some ordered conformation as indicated by a high retention of .alpha.-helix and compact structure. This effect of LiClO4 was confirmed by the observation that the .alpha.-helix of isolated S-peptide is stabilized in the presence of 3.5 M LiClO4 (pH 3.0), as measured by circular dichroism and NMR. The effect of the retained .alpha.-helices and compact structure on the folding kinetics of RNase A was studied by comparison with the kinetic folding from urea-denatured RNase A, which has no ordered structure. In contrast to a previous study under folding conditions, the kinetic folding/unfolding experiments were carried out here in the transition regions between native and LiClO4-denatured RNase A, and between native and urea-denatured RNase A. The measured relaxation times were extrapolated to the triple point, where native RNase A, LiClO4-denatured RNase A, and urea-denatured RNase A have the same thermodynamic staiblity and are at the same concentration in order to compare the rates of these 2 processes under the same solvent conditions. Under these conditions, both folding and unfolding pathways are studied simultaneously without any accumulated intermediates. No significant acceleration of folding was observed from LiClO4-denatured RNase A as compared to that from urea-denatured RNase A. This indicates that all ordered structures in RNase A are not equivalent in their influence on the folding pathway; some may play an essential role and some may not. It appears that the .alpha.-helix in the S-peptide portion of RNase A and one or more .beta.-bends, which establish the compact structure, are among those ordered structures that do not play an essential role in the folding of RNase A.