The crystal structure of a quinohemoprotein amine dehydrogenase from Pseudomonas putida has been determined at 1.9-Å resolution. The enzyme comprises three non-identical subunits: a four-domain α-subunit that harbors a di-heme cytochrome c, a seven-bladed β-propeller β-subunit that provides part of the active site, and a small γ-subunit that contains a novel cross-linked, proteinous quinone cofactor, cysteine tryptophylquinone. More surprisingly, the catalytic γ-subunit contains three additional chemical cross-links that encage the cysteine tryptophylquinone cofactor, involving a cysteine side chain bridged to either an Asp or Glu residue all in a hitherto unknown thioether bonding with a methylene carbon atom of acidic amino acid side chains. Thus, the structure of the 79-residue γ-subunit is quite unusual, containing four internal cross-links in such a short polypeptide chain that would otherwise be difficult to fold into a globular structure.
CITATION STYLE
Satoh, A., Kim, J.-K., Miyahara, I., Devreese, B., Vandenberghe, I., Hacisalihoglu, A., … Hirotsu, K. (2002). Crystal Structure of Quinohemoprotein Amine Dehydrogenase from Pseudomonas putida. Journal of Biological Chemistry, 277(4), 2830–2834. https://doi.org/10.1074/jbc.m109090200
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