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Unfolding of CBP21, a lytic polysaccharide monooxygenase,without dissociation of its copper ion cofactor
Authors:Hayuki Sugimoto  Yuichi Nakajima  Ayaka Motoyama  Erina Katagiri  Takeshi Watanabe  Kazushi Suzuki
Affiliation:1. Graduate School of Science and Technology, Niigata University, Niigata, Japan;2. Department of Applied Biological Chemistry, Faculty of Agriculture, Niigata University, Niigata, Japan;3. Graduate School of Science and Technology, Niigata University, Niigata, Japan

Department of Applied Biological Chemistry, Faculty of Agriculture, Niigata University, Niigata, Japan

Abstract:Chitin-binding protein 21 (CBP21) from Serratia marcescens is a lytic polysaccharide monooxygenase that contains a copper ion as a cofactor. We aimed to elucidate the unfolding mechanism of CBP21 and the effects of Cu2+ on its structural stability at pH 5.0. Thermal unfolding of both apo- and holoCBP21 was reversible. ApoCBP21 unfolded in a simple two-state transition manner. The peak temperature of the DSC curve, tp, for holoCBP21 (74.4°C) was about nine degrees higher than that for apoCBP21 (65.6°C). The value of tp in the presence of excess Cu2+ was around 75°C, indicating that Cu2+ does not dissociate from the protein molecule during unfolding. The unfolding mechanism of holoCBP21 was considered to be as follows: N∙Cu2+ ⇌ U∙Cu2+, where N and U represent the native and unfolded states, respectively. Urea-induced equilibrium unfolding analysis showed that holoCBP21 was stabilized by 35 kJ mol−1 in terms of the Gibbs energy change for unfolding (pH 5.0, 25°C), compared with apoCBP21. The increased stability of holoCBP21 was considered to result from the structural stabilization of the protein-Cu2+ complex itself.
Keywords:CBP21  copper ion  DSC  lytic polysaccharide monooxygenase  unfolding
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