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Initial characterization of autoprocessing and active-center mutants of CMV proteinase.

作者信息

Snyder S W, Edalji R P, Lindh F G, Walter K A, Solomon L, Pratt S, Steffy K, Holzman T F

机构信息

Protein Biochemistry, Pharmaceutical Discovery, Abbott Laboratories, Abbott Park, Illinois 60064, USA.

出版信息

J Protein Chem. 1996 Nov;15(8):763-74. doi: 10.1007/BF01887151.

DOI:10.1007/BF01887151
PMID:9008301
Abstract

Human cytomegalovirus (CMV) encodes a unique serine proteinase that is required in the maturation of the viral capsid. The CMV proteinase can undergo autocatalytic activation and is subject to proteolytic self-inactivation. Mutant enzyme forms were prepared to eliminate the initial autoprocessing site and thus form an active single-chain protein for structure-function studies. Two mutants of CMV proteinase were cloned and expressed in Escherichia coli. The A143V mutant was a conservative substitution at the first internal cleavage site. The S132A mutant modified one of the triad of residues responsible for catalytic activity. Through the use of computer-controlled high-cell-density fermentations the mutant proteins were expressed in E. coli at approximately 170 mg/L as both soluble (approximately 40% of total) and inclusion-body forms (approximately 60% of total). The soluble enzyme was purified by standard methods; inclusion-body protein was isolated by standard methods after refolding and solubilization in guanidine or urea. Sedimentation equilibrium and sedimentation velocity analyses reveal that the enzyme undergoes concentration-dependent aggregation. It exhibits a monomer <==> dimer equilibrium (Kd = 1 microM) at low concentrations and remains dimeric at high concentrations (28 mg/ml). Differential scanning calorimetry data for protein thermal unfolding fit best to a non-two-state model with two components (Tm = 52.3 and 55.3 degrees C) which subsequently aggregate upon unfolding. Analysis of the short-UV circular dichroism spectra of protein forms resulting from expression as soluble molecules (not refolded) reveals that the two mutants have very similar secondary structures which comprise a mixed structural motif of 20% alpha-helix, 26% beta-sheet, and 53% random coil. Though soluble and active (A143V mutant only), CD analysis revealed that protein refolded from inclusion bodies did not exhibit spectra identical to that of protein expressed only in soluble form.

摘要

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J Virol. 1996 Aug;70(8):5395-404. doi: 10.1128/JVI.70.8.5395-5404.1996.
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Flavins inhibit human cytomegalovirus UL80 protease via disulfide bond formation.黄素通过形成二硫键抑制人巨细胞病毒UL80蛋白酶。
Biochemistry. 1996 May 7;35(18):5847-55. doi: 10.1021/bi9529972.
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Inhibition of human cytomegalovirus UL80 protease by specific intramolecular disulfide bond formation.
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Biochemistry. 1996 May 7;35(18):5838-46. doi: 10.1021/bi952996+.
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