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钾离子诱导的乳过氧化物酶部分抑制:乳过氧化物酶与钾离子复合物的 2.20Å 分辨率结构。

Potassium-induced partial inhibition of lactoperoxidase: structure of the complex of lactoperoxidase with potassium ion at 2.20 Å resolution.

机构信息

Department of Biophysics, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, 110 029, India.

出版信息

J Biol Inorg Chem. 2021 Feb;26(1):149-159. doi: 10.1007/s00775-020-01844-6. Epub 2021 Jan 11.

Abstract

Lactoperoxidase, a heme-containing glycoprotein, catalyzes the oxidation of thiocyanate by hydrogen peroxide into hypothiocyanite which acts as an antibacterial agent. The prosthetic heme moiety is attached to the protein through two ester linkages via Glu258 and Asp108. In lactoperoxidase, the substrate-binding site is formed on the distal heme side. To study the effect of physiologically important potassium ion on the structure and function of lactoperoxidase, the fresh protein samples were isolated from yak (Bos grunniens) colostrum and purified to homogeneity. The biochemical studies with potassium fluoride showed a significant reduction in the catalytic activity. Lactoperoxidase was crystallized using 200 mM ammonium nitrate and 20% PEG-3350 at pH 6.0. The crystals of LPO were soaked in the solution of potassium fluoride and used for the X-ray intensity data collection. Structure determination at 2.20 Å resolution revealed the presence of a potassium ion in the distal heme cavity. Structure determination further revealed that the propionic chain attached to pyrrole ring C of the heme moiety, was disordered into two components each having an occupancy of 0.5. One component occupied a position similar to the normally observed position of propionic chain while the second component was found in the distal heme cavity. The potassium ion in the distal heme cavity formed five coordinate bonds with two oxygen atoms of propionic moiety, N atom of His109 and two oxygen atoms of water molecules. The presence of potassium ion in the distal heme cavity hampered the catalytic activity of lactoperoxidase.

摘要

乳过氧化物酶是一种含血红素的糖蛋白,它能催化过氧化氢将硫氰酸盐氧化成次碘酸盐,从而起到抗菌作用。辅基血红素通过 Glu258 和 Asp108 上的两个酯键与蛋白质相连。在乳过氧化物酶中,底物结合位点形成在远端血红素侧。为了研究生理上重要的钾离子对乳过氧化物酶结构和功能的影响,从牦牛(Bos grunniens)初乳中分离并纯化了新鲜的蛋白质样品。用氟化钾进行的生化研究表明,催化活性显著降低。乳过氧化物酶采用 200 mM 硝酸铵和 20%PEG-3350 在 pH6.0 条件下结晶。将 LPO 晶体浸泡在氟化钾溶液中,用于 X 射线强度数据收集。在 2.20 Å分辨率下的结构测定表明,在远端血红素腔中存在一个钾离子。结构测定进一步表明,与血红素部分吡咯环 C 相连的丙酸链被无序成两个部分,每个部分的占有率为 0.5。一个部分占据了与正常观察到的丙酸链位置相似的位置,而第二个部分位于远端血红素腔中。远端血红素腔中的钾离子与丙酸部分的两个氧原子、His109 的 N 原子和两个水分子的氧原子形成五配位键。远端血红素腔中的钾离子阻碍了乳过氧化物酶的催化活性。

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