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通过X射线晶体学确定辣根过氧化物酶C与底物苯甲羟肟酸之间的结构相互作用。

Structural interactions between horseradish peroxidase C and the substrate benzhydroxamic acid determined by X-ray crystallography.

作者信息

Henriksen A, Schuller D J, Meno K, Welinder K G, Smith A T, Gajhede M

机构信息

Department of Chemistry, University of Copenhagen, Denmark.

出版信息

Biochemistry. 1998 Jun 2;37(22):8054-60. doi: 10.1021/bi980234j.

Abstract

The three-dimensional structure of recombinant horseradish peroxidase in complex with BHA (benzhydroxamic acid) is the first structure of a peroxidase-substrate complex demonstrating the existence of an aromatic binding pocket. The crystal structure of the peroxidase-substrate complex has been determined to 2.0 A resolution with a crystallographic R-factor of 0.176 (R-free = 0. 192). A well-defined electron density for BHA is observed in the peroxidase active site, with a hydrophobic pocket surrounding the aromatic ring of the substrate. The hydrophobic pocket is provided by residues H42, F68, G69, A140, P141, and F179 and heme C18, C18-methyl, and C20, with the shortest distance (3.7 A) found between heme C18-methyl and BHA C63. Very little structural rearrangement is seen in the heme crevice in response to substrate binding. F68 moves to form a lid on the hydrophobic pocket, and the distal water molecule moves 0.6 A toward the heme iron. The bound BHA molecule forms an extensive hydrogen bonding network with H42, R38, P139, and the distal water molecule 2.6 A above the heme iron. This remarkably good match in hydrogen bond requirements between the catalytic residues of HRPC and BHA makes the extended interaction between BHA and the distal heme crevice of HRPC possible. Indeed, the ability of BHA to bind to peroxidases, which lack a peripheral hydrophobic pocket, suggests that BHA is a general counterpart for the conserved hydrogen bond donors and acceptors of the distal catalytic site. The closest aromatic residue to BHA is F179, which we predict provides an important hydrophobic interaction with more typical peroxidase substrates.

摘要

重组辣根过氧化物酶与BHA(苯甲羟肟酸)复合物的三维结构是过氧化物酶 - 底物复合物的首个结构,证明了芳香族结合口袋的存在。过氧化物酶 - 底物复合物的晶体结构已确定至2.0埃分辨率,晶体学R因子为0.176(R自由值 = 0.192)。在过氧化物酶活性位点观察到BHA明确的电子密度,底物的芳香环周围有一个疏水口袋。该疏水口袋由H42、F68、G69、A140、P141和F179残基以及血红素C18、C18 - 甲基和C20提供,血红素C18 - 甲基与BHA C63之间的最短距离为3.7埃。响应底物结合,血红素裂隙中几乎未见结构重排。F68移动形成疏水口袋上的盖子,远端水分子向血红素铁移动0.6埃。结合的BHA分子与H42、R38、P139以及血红素铁上方2.6埃处的远端水分子形成广泛的氢键网络。HRPC催化残基与BHA之间在氢键需求上的这种显著良好匹配使得BHA与HRPC远端血红素裂隙之间的扩展相互作用成为可能。实际上,BHA与缺乏外周疏水口袋的过氧化物酶结合的能力表明,BHA是远端催化位点保守氢键供体和受体的通用对应物。与BHA最接近的芳香族残基是F179,我们预测它与更典型的过氧化物酶底物提供重要的疏水相互作用。

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