Mukhopadhyay Bishnu P
Department of Chemistry National Institute of Technology-Durgapur, West Bengal, Durgapur - 713209, India.
Bioinformation. 2019 Jun 15;15(6):402-411. doi: 10.6026/97320630015402. eCollection 2019.
Human Ceruloplasmin (hCP) is an unique multicopper oxidase which involves in different biological functions e.g., iron metabolism, copper transportation, biogenic amine oxidation ,and its malfunction causes Wilson's and Menkes diseases. MD- simulation studies of O2- bound solvated structure have revealed the role of several conserved/ semi-conserved water molecules in the hydration of type-I copper centers and their involvement to recognition dynamics of these metal centers. In O2- bound structure, hydration potentiality of CuRS (Cu1106) type-I copper center is observed to be unique, where two water molecules (W1-W2) are interacting with the metal sites, which was not found in X-ray structures of hCP. Generally, in the interdomain recognition of Cu to CuRS, CuRS to CuPR and CuPR to Cu centers, the copper bound His-residue of one domain interacts with the Glu-residue of other complementary domain through conserved/ semi-conserved (W3 to W5) water- mediated hydrogen bonds (Cu-His...W...Glu), however direct salt-bridge (Cu-His...Glu) interaction were observed in the X- ray structures. The MD- simulated and X- ray structures have indicated some possibilities on the Cu-His...W...Glu ↔ Cu-His...Glu transition during the interdomain recognition of type-I copper centers, which may have some importance in biology and chemistry of ceruloplasmin.
人铜蓝蛋白(hCP)是一种独特的多铜氧化酶,参与不同的生物学功能,如铁代谢、铜运输、生物胺氧化,其功能异常会导致威尔逊病和门克斯病。对与O₂结合的溶剂化结构进行的分子动力学模拟研究揭示了几个保守/半保守水分子在I型铜中心水合作用中的作用及其对这些金属中心识别动力学的参与。在与O₂结合的结构中,观察到CuRS(Cu1106)I型铜中心的水合潜力独特,其中两个水分子(W1-W2)与金属位点相互作用,这在hCP的X射线结构中未发现。一般来说,在Cu与CuRS、CuRS与CuPR以及CuPR与Cu中心的结构域间识别中,一个结构域中与铜结合的组氨酸残基通过保守/半保守(W3至W5)水介导的氢键(Cu-组氨酸...W...谷氨酸)与另一个互补结构域的谷氨酸残基相互作用,然而在X射线结构中观察到直接的盐桥(Cu-组氨酸...谷氨酸)相互作用。分子动力学模拟和X射线结构表明,在I型铜中心的结构域间识别过程中,Cu-组氨酸...W...谷氨酸 ↔ Cu-组氨酸...谷氨酸转变存在一些可能性,这可能在铜蓝蛋白的生物学和化学中具有一定重要性。