Literature DB >> 7479689

Conversion of human 15-lipoxygenase to an efficient 12-lipoxygenase: the side-chain geometry of amino acids 417 and 418 determine positional specificity.

D L Sloane1, R Leung, J Barnett, C S Craik, E Sigal.   

Abstract

Positional specificity determinants of human 15-lipoxygenase were examined by site-directed mutagenesis and by kinetic analysis of the wild-type and variant enzymes. By comparing conserved differences among sequences of 12- and 15-lipoxygenases, a small region responsible for functional differences between 12- and 15-lipoxygenases has been identified. Furthermore, the replacement of only two amino acids in 15-lipoxygenase (at 417 and 418 in the primary sequence) by those found in certain 12-lipoxygenases results in an enzyme that has activity similar to 12-lipoxygenase. An examination of the activity of nine variants of lipoxygenase demonstrated that the amino acid side-chain bulk and geometry of residues 417 and 418 are the key components of the positional specificity determinant of 15-lipoxygenase. Overexpression of a variant (containing valines at positions 417 and 418) that performs predominantly 12-lipoxygenation was achieved in a baculo-virus-insect cell culture system. This variant was purified to > 90% homogeneity and its kinetics were compared with the wild-type 15-lipoxygenase. The variant enzyme has no change in its apparent KM for arachidonic acid and a minor (3-fold) change in its Vmax. For linoleic acid, the variant has no change in its KM and a 10-fold reduction in its Vmax, as expected for an enzyme performing predominantly 12-lipoxygenation. The results are consistent with a model in which two amino acids of 15-lipoxygenase (isoleucine 417 and methionine 418) constitute a structural element which contributes to the regiospecificity of the enzyme. Replacement of these amino acids with those found in certain 12-lipoxygenases results in an enzyme which can bind arachidonic acid in a catalytic register that prefers 12-lipoxygenation.

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Year:  1995        PMID: 7479689     DOI: 10.1093/protein/8.3.275

Source DB:  PubMed          Journal:  Protein Eng        ISSN: 0269-2139


  12 in total

1.  Probing the Electrostatic and Steric Requirements for Substrate Binding in Human Platelet-Type 12-Lipoxygenase.

Authors:  Ansari Mukhtar Aleem; Wan-Chen Tsai; Jennyfer Tena; Gabriella Alvarez; Joshua Deschamps; Chakrapani Kalyanaraman; Matthew P Jacobson; Theodore Holman
Journal:  Biochemistry       Date:  2019-01-04       Impact factor: 3.162

2.  Discovery of potent and selective inhibitors of human platelet-type 12- lipoxygenase.

Authors:  Victor Kenyon; Ganesha Rai; Ajit Jadhav; Lena Schultz; Michelle Armstrong; J Brian Jameson; Steven Perry; Netra Joshi; James M Bougie; William Leister; David A Taylor-Fishwick; Jerry L Nadler; Michael Holinstat; Anton Simeonov; David J Maloney; Theodore R Holman
Journal:  J Med Chem       Date:  2011-07-08       Impact factor: 7.446

3.  Evolutionary alteration of ALOX15 specificity optimizes the biosynthesis of antiinflammatory and proresolving lipoxins.

Authors:  Susan Adel; Felix Karst; Àngels González-Lafont; Mária Pekárová; Patricia Saura; Laura Masgrau; José M Lluch; Sabine Stehling; Thomas Horn; Hartmut Kuhn; Dagmar Heydeck
Journal:  Proc Natl Acad Sci U S A       Date:  2016-07-13       Impact factor: 11.205

4.  Human 15-LOX-1 active site mutations alter inhibitor binding and decrease potency.

Authors:  Michelle Armstrong; Christopher van Hoorebeke; Thomas Horn; Joshua Deschamps; J Cody Freedman; Chakrapani Kalyanaraman; Matthew P Jacobson; Theodore Holman
Journal:  Bioorg Med Chem       Date:  2016-08-31       Impact factor: 3.641

5.  Role of Human 15-Lipoxygenase-2 in the Biosynthesis of the Lipoxin Intermediate, 5S,15S-diHpETE, Implicated with the Altered Positional Specificity of Human 15-Lipoxygenase-1.

Authors:  Steven C Perry; Thomas Horn; Benjamin E Tourdot; Adriana Yamaguchi; Chakrapani Kalyanaraman; William S Conrad; Oluwayomi Akinkugbe; Michael Holinstat; Matthew P Jacobson; Theodore R Holman
Journal:  Biochemistry       Date:  2020-10-13       Impact factor: 3.162

6.  Oxidative metabolism of a fatty acid amide hydrolase-regulated lipid, arachidonoyltaurine.

Authors:  Melissa V Turman; Philip J Kingsley; Carol A Rouzer; Benjamin F Cravatt; Lawrence J Marnett
Journal:  Biochemistry       Date:  2008-03-01       Impact factor: 3.162

Review 7.  Thematic Review Series: Proteomics. An integrated omics analysis of eicosanoid biology.

Authors:  Matthew W Buczynski; Darren S Dumlao; Edward A Dennis
Journal:  J Lipid Res       Date:  2009-02-24       Impact factor: 5.922

8.  Specificity of lipoxygenase pathways supports species delineation in the marine diatom genus Pseudo-nitzschia.

Authors:  Nadia Lamari; Maria Valeria Ruggiero; Giuliana d'Ippolito; Wiebe H C F Kooistra; Angelo Fontana; Marina Montresor
Journal:  PLoS One       Date:  2013-08-27       Impact factor: 3.240

9.  Oxylipin diversity in the diatom family Leptocylindraceae reveals DHA derivatives in marine diatoms.

Authors:  Deepak Nanjappa; Giuliana d'Ippolito; Carmela Gallo; Adriana Zingone; Angelo Fontana
Journal:  Mar Drugs       Date:  2014-01-17       Impact factor: 5.118

10.  A dual positional specific lipoxygenase functions in the generation of flavor compounds during climacteric ripening of apple.

Authors:  Doreen Schiller; Carolina Contreras; Jörg Vogt; Frank Dunemann; Bruno G Defilippi; Randolph Beaudry; Wilfried Schwab
Journal:  Hortic Res       Date:  2015-02-25       Impact factor: 6.793

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