Department of Biochemistry and Molecular Biology, Indiana University School of Medicine, Indianapolis, IN 46202, USA.
GM/CA at the Advanced Photon Source, Argonne National Laboratory, Lemont, IL 60439, USA.
Acta Crystallogr D Struct Biol. 2021 Oct 1;77(Pt 10):1336-1345. doi: 10.1107/S205979832100944X. Epub 2021 Sep 29.
Multicopper oxidases (MCOs) represent a diverse family of enzymes that catalyze the oxidation of either an organic or a metal substrate with concomitant reduction of dioxygen to water. These enzymes contain variable numbers of cupredoxin domains, two, three or six per subunit, and rely on four copper ions, a single type I copper and three additional copper ions organized in a trinuclear cluster (TNC), with one type II and two type III copper ions, to catalyze the reaction. Here, two crystal structures and the enzymatic characterization of Marinithermus hydrothermalis MCO, a two-domain enzyme, are reported. This enzyme decolorizes Congo Red dye at 70°C in the presence of high halide concentrations and may therefore be useful in the detoxification of industrial waste that contains dyes. In two distinct crystal structures, MhMCO forms the trimers seen in other two-domain MCOs, but differs from these enzymes in that four trimers interact to create a dodecamer. This dodecamer of MhMCO forms a closed ball-like structure and has implications for the sequestration of bound divalent metal ions as well as substrate accessibility. In each subunit of the dodecameric structures, a Trp residue, Trp351, located between the type I and TNC sites exists in two distinct conformations, consistent with a potential role in facilitating electron transfer in the enzyme.
多铜氧化酶 (MCOs) 是一个多样化的酶家族,能够催化有机或金属底物的氧化,同时将氧气还原为水。这些酶包含可变数量的铜氧还蛋白结构域,每个亚基有两个、三个或六个,依赖于四个铜离子、一个单类型 I 铜离子和三个额外的铜离子组成的三聚体 (TNC),其中一个类型 II 和两个类型 III 铜离子,以催化反应。本文报道了 Marinithermus hydrothermalis MCO 的两种晶体结构和酶学特征,MCO 是一种具有两个结构域的酶。该酶在高卤化物浓度存在下于 70°C 时可使刚果红染料脱色,因此可能对含有染料的工业废物的解毒有用。在两种不同的晶体结构中,MhMCO 形成了其他具有两个结构域的 MCO 中所见的三聚体,但与这些酶不同的是,四个三聚体相互作用形成十二聚体。MhMCO 的十二聚体形成封闭的球状结构,这对结合的二价金属离子的隔离以及底物的可及性有影响。在十二聚体结构的每个亚基中,位于 I 型和 TNC 位点之间的色氨酸残基 Trp351 存在两种不同的构象,这与在酶中促进电子转移的潜在作用一致。