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  • 标题:Crystal structure of a lipoxygenase from Cyanothece sp. may reveal novel features for substrate acquisition
  • 本地全文:下载
  • 作者:Julia Newie ; Alexandra Andreou ; Piotr Neumann
  • 期刊名称:JLR Papers In Press
  • 印刷版ISSN:0022-2275
  • 电子版ISSN:1539-7262
  • 出版年度:2016
  • 卷号:57
  • 期号:2
  • 页码:276-287
  • DOI:10.1194/jlr.M064980
  • 语种:English
  • 出版社:American Society for Biochemistry and Molecular Biology
  • 摘要:In eukaryotes, oxidized PUFAs, so-called oxylipins, are vital signaling molecules. The first step in their biosynthesis may be catalyzed by a lipoxygenase (LOX), which forms hydroperoxides by introducing dioxygen into PUFAs. Here we characterized CspLOX1, a phylogenetically distant LOX family member from Cyanothece sp. PCC 8801 and determined its crystal structure. In addition to the classical two domains found in plant, animal, and coral LOXs, we identified an N-terminal helical extension, reminiscent of the long α-helical insertion in Pseudomonas aeruginosa LOX. In liposome flotation studies, this helical extension, rather than the β-barrel domain, was crucial for a membrane binding function. Additionally, CspLOX1 could oxygenate 1,2-diarachidonyl- sn -glycero-3-phosphocholine, suggesting that the enzyme may act directly on membranes and that fatty acids bind to the active site in a tail-first orientation. This binding mode is further supported by the fact that CspLOX1 catalyzed oxygenation at the n-10 position of both linoleic and arachidonic acid, resulting in 9 R - and 11 R -hydroperoxides, respectively. Together these results reveal unifying structural features of LOXs and their function. While the core of the active site is important for lipoxygenation and thus highly conserved, peripheral domains functioning in membrane and substrate binding are more variable.
  • 关键词:arachidonic acid ; eicosanoids ; enzymology ; fatty acid/oxidation ; lipids/peroxidation ; membrane ; phospholipids/metabolism ; X-ray crystallography
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