Department of Chemistry, Inorganic Chemistry Laboratory, University of Oxford, South Parks Road, Oxford, OX1 3QR, UK.
J Biol Inorg Chem. 2010 Mar;15(3):315-28. doi: 10.1007/s00775-009-0604-7. Epub 2009 Nov 11.
CYP199A2 from Rhodopseudomonas palustris CGA009 is a heme monooxygenase that catalyzes the oxidation of para-substituted benzoic acids. CYP199A2 activity is reconstituted by a class I electron transfer chain consisting of the associated [2Fe-2S] ferredoxin palustrisredoxin (Pux) and a flavoprotein palustrisredoxin reductase (PuR). Another [2Fe-2S] ferredoxin, palustrisredoxin B (PuxB; RPA3956) has been identified in the genome. PuxB shares sequence identity and motifs with vertebrate-type ferredoxins involved in Fe-S cluster assembly but also 50% identity with Pux and it mediates electron transfer from PuR to CYP199A2, albeit with lower steady-state turnover activity: 99 nmol (nmol P450)(-1)min(-1) for 4-methoxybenzoic acid oxidation compared with 1,438 nmol (nmol P450)(-1 )min(-1) for Pux. This difference mainly arises from weak CYP199A2-PuxB binding (K (m) 34.3 vs. 0.45 microM for Pux) rather than slow electron transfer (k (cat) 19.1 vs. 37.9 s(-1) for Pux). Comparison of the 2.0-A-resolution crystal structure of the PuxB A105R mutant with other vertebrate-type, P450-associated ferredoxins revealed similar protein folds but also significant differences in some loop regions. Therefore, PuxB offers a platform for studying ferredoxin-P450 recognition in class I P450 systems. Substitution of PuxB residues at key locations with those in Pux shows that Ala42, Cys43, and Ala44 in the [2Fe-2S] cluster binding loop and Met66 are important in electron transfer from PuxB to CYP199A2, whereas Phe73 and the C-terminal Ala105 were involved in both protein binding and electron transfer.
沼泽红假单胞菌 CYP199A2 是一种血红素单加氧酶,能够催化对取代苯甲酸的氧化。CYP199A2 的活性由由一个 I 类电子传递链组成,该电子传递链由结合的[2Fe-2S]铁氧还蛋白 palustrisredoxin(Pux)和黄素蛋白 palustrisredoxin 还原酶(PuR)组成。在基因组中还鉴定出另一种[2Fe-2S]铁氧还蛋白 palustrisredoxin B(PuxB;RPA3956)。PuxB 与参与 Fe-S 簇组装的脊椎动物型铁氧还蛋白具有序列同一性和基序,但与 Pux 也有 50%的同一性,它介导 PuR 向 CYP199A2 的电子转移,尽管其稳态周转率活性较低:对于 4-甲氧基苯甲酸的氧化,为 99 nmol(nmol P450)-1 min-1,而对于 Pux,为 1,438 nmol(nmol P450)-1 min-1。这种差异主要是由于 CYP199A2-PuxB 结合较弱(K m 34.3 与 Pux 的 0.45 microM 相比),而不是电子转移缓慢(k cat 19.1 与 Pux 的 37.9 s-1 相比)。将 PuxB A105R 突变体的 2.0-A 分辨率晶体结构与其他脊椎动物型、P450 相关铁氧还蛋白进行比较,发现它们具有相似的蛋白质折叠,但在一些环区也存在显著差异。因此,PuxB 为研究 I 类 P450 系统中铁氧还蛋白-P450 识别提供了一个平台。用 Pux 中的残基替换 PuxB 中的关键位置的取代表明,[2Fe-2S]簇结合环中的 Ala42、Cys43 和 Ala44 以及 Met66 对 PuxB 向 CYP199A2 的电子转移很重要,而 Phe73 和 C 末端 Ala105 既参与蛋白结合,也参与电子转移。