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Journal:JBIC:22
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(Difference between revisions)

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<b>Molecular Tour</b><br> | <b>Molecular Tour</b><br> | ||
| - | Catechol oxidases (EC 1.10.3.1) catalyse the oxidation of o-diphenols to their corresponding o-quinones. These oxidases contain two copper ions (CuA and CuB) within the so-called coupled binuclear type-3 copper site as found in tyrosinases (EC 1.14.18.1) and haemocyanins. We determined the first crystal structure of a fungal catechol oxidase from Aspergillus oryzae (AoCO4). | + | Catechol oxidases (EC 1.10.3.1) catalyse the oxidation of o-diphenols to their corresponding o-quinones. These oxidases contain two copper ions (CuA and CuB) within the so-called coupled binuclear type-3 copper site as found in tyrosinases (EC 1.14.18.1) and haemocyanins. We determined the first crystal structure of a fungal catechol oxidase from ''Aspergillus oryzae'' (AoCO4). |
Two different forms of AoCO4, called as a full-length and a truncated, were crystallized and the structures were solved at 2.5 and 2.9 Å resolution, respectively. The overall structure of AoCO4 is predominantly α-helical. A four-helix bundle forms the core of the protein and the catalytic copper site is situated within this helical bundle. The truncated form lacks the long N-terminal α-helix (shown in cyan), which is not part of the central helical bundle (shown in green). Both the full-length and truncated form exists as a similar transient dimer (surface area 855 Å<sup>2</sup>) in crystal. | Two different forms of AoCO4, called as a full-length and a truncated, were crystallized and the structures were solved at 2.5 and 2.9 Å resolution, respectively. The overall structure of AoCO4 is predominantly α-helical. A four-helix bundle forms the core of the protein and the catalytic copper site is situated within this helical bundle. The truncated form lacks the long N-terminal α-helix (shown in cyan), which is not part of the central helical bundle (shown in green). Both the full-length and truncated form exists as a similar transient dimer (surface area 855 Å<sup>2</sup>) in crystal. | ||
Revision as of 08:55, 17 September 2013
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- ↑ REF
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