4.6 Article

Patatin-like lipolytic acyl hydrolases and galactolipid metabolism in marine diatoms of the genus Pseudo-nitzschia

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ELSEVIER
DOI: 10.1016/j.bbalip.2018.11.008

关键词

Glycolipid; Lipoxygenase pathway; Patatin; Chloroplast; Phospholipid; Lipase; Lipid metabolism

资金

  1. project Integrated Exploitation of Algal Biomass for Production of Energy - National Operational Programme for Research and Competitiveness 2007-2013 [PON01_02740]
  2. [FP7-PEOPLE-2011-CIG 293887]

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Diatoms are eukaryotic microalgae that play a pivotal role in biological and geochemical marine cycles. These microorganisms are at the basis of the trophic chain and their lipids are essential components (e.g. eicosapentaenoic acid, EPA) of aquatic food webs. Galactolipids are the primary lipid components of plastid membranes and form the largest lipid family of diatoms. As source of polyunsaturated fatty acids (PUFAs), these compounds are also involved in the synthesis of lipoxygenase (LOX) products such as non-volatile oxylipins and polyunsaturated aldehydes. Here, we report the first identification of two genes, namely PmLAH1 and PaLAH1, coding for lipolytic enzymes in two diatoms of the genus Pseudo-nitzschia. Functional and modeling studies evidence a patatin-like domain endowed with galactolipase and phospholipase activity at the C-terminus of both proteins. Homologues of Pseudo-nitzschia LAH1 genes were retrieved in other diatom species so far sequenced in agreement with conservation of the functional role of these proteins within the lineage.

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