首页> 美国卫生研究院文献>Biophysical Journal >Inhibition of Lactoperoxidase by Its Own Catalytic Product: Crystal Structure of the Hypothiocyanate-Inhibited Bovine Lactoperoxidase at 2.3-Å Resolution
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Inhibition of Lactoperoxidase by Its Own Catalytic Product: Crystal Structure of the Hypothiocyanate-Inhibited Bovine Lactoperoxidase at 2.3-Å Resolution

机译:乳过氧化物酶自身的催化产物抑制作用:次硫氰酸盐抑制的牛乳过氧化物酶的晶体结构分辨率为2.3-Å

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摘要

To the best of our knowledge, this is the first report on the structure of product-inhibited mammalian peroxidase. Lactoperoxidase is a heme containing an enzyme that catalyzes the inactivation of a wide range of microorganisms. In the presence of hydrogen peroxide, it preferentially converts thiocyanate ion into a toxic hypothiocyanate ion. Samples of bovine lactoperoxidase containing thiocyanate (SCN) and hypothiocyanate (OSCN) ions were purified and crystallized. The structure was determined at 2.3-Å resolution and refined to Rcryst and Rfree factors of 0.184 and 0.221, respectively. The determination of structure revealed the presence of an OSCN ion at the distal heme cavity. The presence of OSCN ions in crystal samples was also confirmed by chemical and spectroscopic analysis. The OSCN ion interacts with the heme iron, Gln-105 Nɛ1, His-109 Nɛ2, and a water molecule W96. The sulfur atom of the OSCN ion forms a hypervalent bond with a nitrogen atom of the pyrrole ring D of the heme moiety at an S–N distance of 2.8 Å. The heme group is covalently bound to the protein through two ester linkages involving carboxylic groups of Glu-258 and Asp-108 and the modified methyl groups of pyrrole rings A and C, respectively. The heme moiety is significantly distorted from planarity, whereas pyrrole rings A, B, C, and D are essentially planar. The iron atom is displaced by ≈0.2 Å from the plane of the heme group toward the proximal site. The substrate channel resembles a long tunnel whose inner walls contain predominantly aromatic residues such as Phe-113, Phe-239, Phe-254, Phe-380, Phe-381, Phe-422, and Pro-424. A phosphorylated Ser-198 was evident at the surface, in the proximity of the calcium-binding channel.
机译:据我们所知,这是有关产物抑制型哺乳动物过氧化物酶结构的首次报道。乳过氧化物酶是一种血红素,其中含有一种酶,可催化多种微生物的失活。在过氧化氢的存在下,它优先将硫氰酸根离子转化为有毒的次硫氰酸根离子。纯化并结晶包含硫氰酸盐(SCN -)和次硫氰酸盐(OSCN -)离子的牛乳过氧化物酶样品。确定该结构的分辨率为2.3-Å,并分别精炼为0.184和0.221的Rcryst和Rfree因子。结构的确定揭示了远端血红素腔中存在OSCN -离子。通过化学和光谱分析也证实了晶体样品中存在OSCN -离子。 OSCN -离子与血红素铁Gln-105 N ɛ 1 和His-109 N ɛ相互作用 2 和一个水分子W96。 OSCN -离子的硫原子与血红素部分的吡咯环D的氮原子在2.8的S–N距离处形成超价键。血红素基团通过两个酯键与蛋白质共价结合,两个酯键分别涉及Glu-258和Asp-108的羧基以及吡咯环A和C的修饰甲基。血红素部分明显偏离平面,而吡咯环A,B,C和D基本上是平面的。铁原子从血红素基团的平面向近端位移了约0.2Å。基质通道类似于一条长隧道,其内壁主要包含芳香族残基,例如Phe-113,Phe-239,Phe-254,Phe-380,Phe-381,Phe-422和Pro-424。在钙结合通道附近的表面上明显有磷酸化的Ser-198。

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