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Reversible unfolding of the severe acute respiratory syndrome coronavirus main protease in guanidinium chloride
Authors:Chang Hui-Ping  Chou Chi-Yuan  Chang Gu-Gang
Affiliation:Department of Life Sciences and Institute of Genome Sciences, National Yang-Ming University, Taipei, Taiwan. huiping_chp@hotmail.com
Abstract:Chemical denaturant sensitivity of the dimeric main protease from severe acute respiratory syndrome (SARS) coronavirus to guanidinium chloride was examined in terms of fluorescence spectroscopy, circular dichroism, analytical ultracentrifuge, and enzyme activity change. The dimeric enzyme dissociated at guanidinium chloride concentration of <0.4 M, at which the enzymatic activity loss showed close correlation with the subunit dissociation. Further increase in guanidinium chloride induced a reversible biphasic unfolding of the enzyme. The unfolding of the C-terminal domain-truncated enzyme, on the other hand, followed a monophasic unfolding curve. Different mutants of the full-length protease (W31 and W207/W218), with tryptophanyl residue(s) mutated to phenylalanine at the C-terminal or N-terminal domain, respectively, were constructed. Unfolding curves of these mutants were monophasic but corresponded to the first and second phases of the protease, respectively. The unfolding intermediate of the protease thus represented a folded C-terminal domain but an unfolded N-terminal domain, which is enzymatically inactive due to loss of regulatory properties. The various enzyme forms were characterized in terms of hydrophobicity and size-and-shape distributions. We provide direct evidence for the functional role of C-terminal domain in stabilization of the catalytic N-terminal domain of SARS coronavirus main protease.
Keywords:SARS  severe acute respiratory syndrome  CoV  coronavirus  3CLpro  3-chymotrypsin-like SARS-CoV main protease  3CLI+II  C-terminal domain-truncated SARS-CoV main protease  W31 (or more precisely W207F/W218F)  double mutant of SARS-CoV 3CLpro with tryptophanyl residues at 207 and 218 mutated to phenylalanine  W207/W218 (or more precisely W31F)  point mutant of SARS-CoV 3CLpro with tryptophanyl residue at position 31 mutated to phenylalanine  AEW  average emission wavelength  CD  circular dichroism  AUC  analytical ultracentrifugation  GdnCl  guanidinium chloride  f/fo  frictional ratio  ANS  1-anilino-8-naphthalene sulfonic acid
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