Double crossed? Structural and computational studies of an unusually crosslinked haem in Methylococcus capsulatus cytochrome P460†

IF 7.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Hans E. Pfalzgraf, Aditya G. Rao, Kakali Sen, Hannah R. Adams, Marcus Edwards, You Lu, Chin Yong, Sofia Jaho, Takehiko Tosha, Hiroshi Sugimoto, Sam Horrell, James Beilsten-Edmands, Robin L. Owen, Colin R. Andrew, Jonathan A. R. Worrall, Ivo Tews, Adrian J. Mulholland, Michael A. Hough and Thomas W. Keal
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Abstract

Cytochromes P460 oxidise hydroxylamine within the nitrogen cycle and contain as their active site an unusual catalytic c-type haem where the porphyrin is crosslinked to the protein via a lysine residue in addition to the canonical cross links from cysteine residues. Understanding how enzymes containing P460 haem oxidise hydroxylamine into either nitrous oxide or nitric oxide has implications for climate change. Interestingly the P460-containing hydroxylamine oxidoreductase utilises a tyrosine crosslink to haem and performs similar chemistry. Previous crystal structures of cytochrome P460 from Nitrosomonas europaea (NeP460) clearly show the existence of a single crosslink between the NZ atom of lysine and the haem porphyrin, with mutagenesis studies indicating roles for the crosslink in positioning a proton transfer residue and/or influencing the distortion of the haem. Here we describe the evidence for a novel double crosslink between lysine and haem in the cytochrome P460 from Methylococcus capsulatus (Bath). In order to understand the complexities of this enzyme system we applied high resolution structural biology approaches at synchrotron and XFEL sources paired with crystal spectroscopies. Linked to this, we carried out QM/MM simulations that enabled the prediction of electronic absorption spectra providing a crucial validation to linking simulations and experimental structures. Our work demonstrates the feasibility of a double crosslink in McP460 and provides an opportunity to investigate how simulations can interact with experimental structures.

Abstract Image

双交叉?甲基尾蚴细胞色素P460中异常交联血红素的结构和计算研究
细胞色素P460在氮循环中氧化羟胺,并含有一种不寻常的催化c型血红素作为活性位点,其中卟啉通过赖氨酸残基与蛋白质交联,除了来自半胱氨酸残基的典型交联。了解含有P460血红素的酶如何将羟胺氧化成一氧化二氮或一氧化二氮,对气候变化具有重要意义。有趣的是,含有p460的羟胺氧化还原酶利用酪氨酸交联与血红素进行类似的化学反应。先前来自europaea亚硝化单胞菌(NeP460)的细胞色素P460的晶体结构清楚地表明,赖氨酸的NZ原子与血红素卟啉之间存在单一交联,诱变研究表明,交联在定位质子转移残基和/或影响血红素畸变方面发挥作用。在这里,我们描述了荚膜甲基球菌(Bath)细胞色素P460中赖氨酸和血红素之间新型双交联的证据。为了了解这种酶系统的复杂性,我们在同步加速器和XFEL光源下应用高分辨率结构生物学方法与晶体光谱配对。与此相关,我们进行了QM/MM模拟,使电子吸收光谱的预测成为可能,为连接模拟和实验结构提供了重要的验证。我们的工作证明了双交联在McP460中的可行性,并提供了一个研究模拟如何与实验结构相互作用的机会。
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来源期刊
Chemical Science
Chemical Science CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
14.40
自引率
4.80%
发文量
1352
审稿时长
2.1 months
期刊介绍: Chemical Science is a journal that encompasses various disciplines within the chemical sciences. Its scope includes publishing ground-breaking research with significant implications for its respective field, as well as appealing to a wider audience in related areas. To be considered for publication, articles must showcase innovative and original advances in their field of study and be presented in a manner that is understandable to scientists from diverse backgrounds. However, the journal generally does not publish highly specialized research.
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