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首页> 外文期刊>The biochemical journal >Proximal mutations at the type?1 copper site of CotA laccase: spectroscopic, redox, kinetic and structural characterization of I494A and L386A mutants
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Proximal mutations at the type?1 copper site of CotA laccase: spectroscopic, redox, kinetic and structural characterization of I494A and L386A mutants

机译:CotA漆酶的1型铜位点的近端突变:I494A和L386A突变体的光谱,氧化还原,动力学和结构表征

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pIn the present study the CotA laccase from iBacillus subtilis/i has been mutated at two hydrophobic residues in the vicinity of the type 1 copper site. The mutation of Leusup386/sup to an alanine residue appears to cause only very subtle alterations in the properties of the enzyme indicating minimal changes in the structure of the copper centres. However, the replacement of Ilesup494/sup by an alanine residue leads to significant changes in the enzyme. Thus the major visible absorption band is upshifted by 16 nm to 625 nm and exhibits an increased intensity, whereas the intensity of the shoulder at approx. 330 nm is decreased by a factor of two. Simulation of the EPR spectrum of the I494A mutant reveals differences in the type 1 as well as in the type 2 copper centre reflecting modifications of the geometry of these centres. The intensity weighted frequencies &νsubCu-S/sub&, calculated from resonance Raman spectra are 410 cmsup?1/sup for the wild-type enzyme and 396 cmsup?1/sup for the I494A mutant, indicating an increase of the Cu–S bond length in the type 1 copper site of the mutant. Overall the data clearly indicate that the Ilesup494/sup mutation causes a major alteration of the structure near the type 1 copper site and this has been confirmed by X-ray crystallography. The crystal structure shows the presence of a fifth ligand, a solvent molecule, at the type 1 copper site leading to an approximate trigonal bipyramidal geometry. The redox potentials of the L386A and I494A mutants are shifted downwards by approx. 60 and 100 mV respectively. These changes correlate well with decreased catalytic efficiency of both mutants compared with the wild-type./p
机译:>在本研究中,枯草芽孢杆菌的CotA漆酶已在1型铜位点附近的两个疏水残基处突变。 Leu 386 突变为丙氨酸残基似乎只引起酶性质的非常细微的变化,表明铜中心的结构变化很小。但是,用丙氨酸残基代替Ile 494 会导致酶的显着变化。因此,主要的可见吸收带上移了16纳米至625纳米,并显示出增加的强度,而肩部的吸收强度大约为5纳米。 330纳米减小了两倍。对I494A突变体的EPR光谱进行仿真,发现1型和2型铜中心的差异反映了这些中心的几何形状。根据共振拉曼光谱计算出的强度加权频率&ν Cu-S &gt ;,野生型酶为410 0 nbsp; cm Δ1,而396  cm ?1 ,表明该突变体的1型铜位点的Cu–S键长度增加。总体而言,数据清楚地表明,Ile 494 突变导致1型铜位点附近的结构发生了重大变化,这已通过X射线晶体学证实。晶体结构显示在类型1的铜位点上存在第五配体(一种溶剂分子),从而导致近似的三角双锥体几何形状。 L386A和I494A突变体的氧化还原电势向下移动约。 60和100 mV。与野生型相比,这些变化与两个突变体的催化效率降低密切相关。

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