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X-ray structure analysis and spectroscopy have been applied to elucidate the mechanism of lipoxygenases.
2
The sequences of over 50 lipoxygenases have been reported.
3
The effects of site directed mutagenesis variants were rationalized using the models of the human lipoxygenases.
4
Soybean lipoxygenase-1 is a single-chain, 839-residue protein closely related to mammalian lipoxygenases.
5
In mammals, lipoxygenases catalyze the formation of hydroperoxides as the first step in the biosynthesis of several inflammatory mediators.
6
Because of the importance of these compounds, lipoxygenases have been the subject of extensive study: from detailed kinetic measurements to cloning, expression, and site-directed mutagenesis.
7
Amino acid sequence data obtained from proteolytic fragments of lipoxygenase 1 show up to 50% identity with other plant lipoxygenases.
8
Lipoxygenases are dioxygenases that contain a nonheme iron and are present in many animal cells.
9
Lipoxygenases catalyze the formation of fatty acid hydroperoxides, products used in further biochemical reactions leading to normal and pathological cell functions.
10
Lipoxygenases are a class of non-heme iron dioxygenases which catalyze the hydroperoxidation of fatty acids for the biosynthesis of leukotrienes and lipoxins.
11
Principal component analysis was used to screen for potential lipoxygenase inhibitors.
12
The purified reaction products were tested for their lipoxygenase inhibitory activities.
13
One goal of this study was to determine whether lipoxygenase-rich cells metabolize AEA.
14
Aims: Genes of the 5-lipoxygenase pathway are compelling candidates for atherosclerosis.
15
Little is known about the relevance of lipoxygenase pathway to ovarian cancer growth.
16
The combined data lead us to conclude that soybean lipoxygenase-1 is not a quinoprotein.