Andersson L A, Johnson A K, Peterson J A
Department of Chemistry, Vassar College, Poughkeepsie, New York 12604-0589, USA.
Arch Biochem Biophys. 1997 Sep 1;345(1):79-87. doi: 10.1006/abbi.1997.0248.
Recent structural studies indicate that the substrate- and O2-binding distal pocket of the P450 enzymes are not identical. Thus, P450terp (CYP108) from the alpha-terpineol-metabolizing Pseudomonad differs from P450cam (CYP-101) (C. A. Hasemann et al., J. Mol. Biol. 236, 1169, 1994). In contrast, the distal pockets of P450terp and P450BMP (CYP102 heme domain; Bacillus megaterium) are more closely similar, including novel hydrogen-bonding interactions between the distal H2O ligand and the I helix (C. A. Hasemann et al., Structure, 3, 41-62, 1995). To evaluate the significance of these differences, we have compared solution magnetic circular dichroism (MCD) spectra of P450terp with spectra of other P450 enzymes (e.g., P450cam, P450BMP, P450BM-3holo, and P450BM1), as well as with spectra of chloroperoxidase and NO synthase. Spectra of native P450terp are more similar to those of P450BMP and those of mammalian P450LM-2 than to those of P450cam. Upon substrate-binding, the MCD spectra of ferric P450terp and all other thiolate-ligated heme systems examined to date display a strong Soret band that is distinctly unique relative to the typical Soret MCD pattern(s) of catalases or other 5-coordinate ferric heme systems. This intense negative MCD feature thus appears diagnostic for cysteinate-linked ferric hemes. In the case of ferrous P450s, the intensity of the Soret-region MCD trough varies between substrate-bound and substrate-free enzymes (despite the fact that the substrate is NOT in direct contact with the heme moiety). A novel finding of particular interest is the clear spectral shifts of the Soret MCD band between the substrate-bound and substrate-free forms of ferrous-CO-P450terp. No such observation has been made previously. Furthermore, the band positions for BOTH types of P450terp are red-shifted from known bands of ferrous-CO-P50cam. These data thus indicate a surprising sensitivity of MCD spectra to active-site polarity and to H2O occupancy, concurring with reports of distal pocket effects on CO-binding rates and equilibrium constants. Comparative analysis of the spectral properties of P450terp with MCD spectra of other P450 enzymes, as well as with chloroperoxidase and NO synthase, demonstrates both the expected similarities and the significant differences that reflect active-site structural features. The detailed spectral analysis of P450terp relative to other P450 enzymes presented herein includes the first observation of a substrate-induced spectral shift for a ferrous-CO-P450. Furthermore, testable structural predictions for P450-BM-1 and for the novel NO synthase enzyme (neither of which has been crystallized to date) are made herein. This work thus provides insights into structurally defined P450s and may also lead to understanding of other P450 enzymes.
最近的结构研究表明,细胞色素P450酶的底物结合和氧气结合的远端口袋并不相同。因此,来自代谢α-松油醇的假单胞菌的P450terp(CYP108)与P450cam(CYP - 101)不同(C. A. 哈斯曼等人,《分子生物学杂志》236卷,1169页,1994年)。相比之下,P450terp和P450BMP(CYP102血红素结构域;巨大芽孢杆菌)的远端口袋更为相似,包括远端水分子配体与I螺旋之间新的氢键相互作用(C. A. 哈斯曼等人,《结构》3卷,41 - 62页,1995年)。为了评估这些差异的重要性,我们将P450terp的溶液磁圆二色性(MCD)光谱与其他P450酶(如P450cam、P450BMP、P450BM - 3全酶和P450BM1)的光谱进行了比较,还与氯过氧化物酶和一氧化氮合酶的光谱进行了比较。天然P450terp的光谱与P450BMP以及哺乳动物P450LM - 2的光谱比与P450cam的光谱更相似。在底物结合后,铁离子形式的P450terp以及迄今为止检测的所有其他硫醇盐连接的血红素系统的MCD光谱都显示出一个强烈的Soret带,相对于过氧化氢酶或其他五配位铁离子血红素系统的典型Soret MCD模式,该带明显独特。因此,这种强烈的负MCD特征似乎是半胱氨酸连接的铁离子血红素的诊断特征。对于亚铁形式的P450,Soret区域MCD谷的强度在底物结合型和底物游离型酶之间有所不同(尽管底物并不直接与血红素部分接触)。一个特别有趣的新发现是,亚铁 - CO - P450terp的底物结合型和底物游离型之间Soret MCD带存在明显的光谱位移。此前尚未有过这样的观察结果。此外,两种类型的P450terp的谱带位置都相对于亚铁 - CO - P50cam的已知谱带发生了红移。这些数据因此表明MCD光谱对活性位点极性和水分子占据情况具有惊人的敏感性,这与关于远端口袋对CO结合速率和平衡常数影响的报道一致。将P450terp的光谱特性与其他P450酶以及氯过氧化物酶和一氧化氮合酶的MCD光谱进行比较分析,既显示了预期的相似性,也显示了反映活性位点结构特征的显著差异。本文中对P450terp相对于其他P450酶进行的详细光谱分析包括首次观察到亚铁 - CO - P450的底物诱导光谱位移。此外,本文还对P450 - BM - 1和新型一氧化氮合酶(这两种酶迄今为止都尚未结晶)做出了可测试的结构预测。因此,这项工作为结构明确的P450提供了见解,也可能有助于理解其他P450酶。