Literature DB >> 8419349

Biosynthesis of ubiquinone and plastoquinone in the endoplasmic reticulum-Golgi membranes of spinach leaves.

E Swiezewska1, G Dallner, B Andersson, L Ernster.   

Abstract

The localization of ubiquinone (UQ) and plastoquinone (PQ) biosynthesis in subfractions isolated from spinach leaves has been studied. UQ-9 and UQ-10 were found mainly in mitochondria, whereas PQ was enriched in chloroplasts, but also found in Golgi membranes. alpha-Unsaturated polyprenol-11 was also present at a low concentration in chloroplasts. Autoradiography revealed the presence of nonaprenyl-4-hydroxybenzoate (NPHB) and nonaprenyl-2-methylquinol (NPMQ) transferase activities involved in quinone biosynthesis in all subfractions, but the specific activities involved in quinone biosynthesis in the total microsomal fraction were 20 times higher than those in mitochondria and chloroplasts. The isolated Golgi vesicles were particularly enriched in both activities. When the incubation medium containing total microsomes or Golgi membranes was supplemented with NADH, NADPH, S-adenosylmethionine, and an ATP-generating system, NPHB and NPMQ were transferred to UQ-9 and PQ, respectively. trans-Prenyltransferase, which synthesizes the side chain of UQ and PQ, was present in the total microsomal fraction. With farnesyl-PP as substrate, no product was formed, but with geranyl-PP, solanesyl-PP was synthesized and transferred to 4-hydroxybenzoate present in the total microsomal fraction. The results show that these membranes from spinach contain farnesyl-PP synthetase. It is concluded that the plant leaf Golgi membranes contain the enzymes for both UQ and PQ biosynthesis and that a specific transport and targeting system is required for selective transfer of UQ to the mitochondria and of PQ to the chloroplast.

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Year:  1993        PMID: 8419349

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  23 in total

1.  Active expression of the ubiA gene from E. coli in tobacco: influence of plant ER-specific signal peptides on the expression of a membrane-bound prenyltransferase in plant cells.

Authors:  R Boehm; S Sommer; K Severin; S M Li; L Heide
Journal:  Transgenic Res       Date:  2000-12       Impact factor: 2.788

2.  Proteomics of chloroplast envelope membranes.

Authors:  Norbert Rolland; Myriam Ferro; Daphné Seigneurin-Berny; Jérôme Garin; Roland Douce; Jacques Joyard
Journal:  Photosynth Res       Date:  2003       Impact factor: 3.573

3.  Ubiquinone synthesis in mitochondrial and microsomal subcellular fractions of Pneumocystis spp.: differential sensitivities to atovaquone.

Authors:  Mireille Basselin; Shannon M Hunt; Hiam Abdala-Valencia; Edna S Kaneshiro
Journal:  Eukaryot Cell       Date:  2005-08

Review 4.  Bringing Bioactive Compounds into Membranes: The UbiA Superfamily of Intramembrane Aromatic Prenyltransferases.

Authors:  Weikai Li
Journal:  Trends Biochem Sci       Date:  2016-02-24       Impact factor: 13.807

5.  Cloning and kinetic characterization of Arabidopsis thaliana solanesyl diphosphate synthase.

Authors:  Kazutake Hirooka; Takeshi Bamba; Ei-ichiro Fukusaki; Akio Kobayashi
Journal:  Biochem J       Date:  2003-03-01       Impact factor: 3.857

6.  Structural insights into ubiquinone biosynthesis in membranes.

Authors:  Wei Cheng; Weikai Li
Journal:  Science       Date:  2014-02-21       Impact factor: 47.728

7.  Two solanesyl diphosphate synthases with different subcellular localizations and their respective physiological roles in Oryza sativa.

Authors:  Kazuaki Ohara; Kanako Sasaki; Kazufumi Yazaki
Journal:  J Exp Bot       Date:  2010-04-25       Impact factor: 6.992

8.  Genome organization in Arabidopsis thaliana: a survey for genes involved in isoprenoid and chlorophyll metabolism.

Authors:  B Markus Lange; Majid Ghassemian
Journal:  Plant Mol Biol       Date:  2003-04       Impact factor: 4.076

9.  The pds2 mutation is a lesion in the Arabidopsis homogentisate solanesyltransferase gene involved in plastoquinone biosynthesis.

Authors:  Li Tian; Dean DellaPenna; Richard A Dixon
Journal:  Planta       Date:  2007-06-14       Impact factor: 4.116

10.  Contribution of the mevalonate and methylerythritol phosphate pathways to the biosynthesis of dolichols in plants.

Authors:  Karolina Skorupinska-Tudek; Jaroslaw Poznanski; Jacek Wojcik; Tomasz Bienkowski; Izabela Szostkiewicz; Monika Zelman-Femiak; Agnieszka Bajda; Tadeusz Chojnacki; Olga Olszowska; Jacob Grunler; Odile Meyer; Michel Rohmer; Witold Danikiewicz; Ewa Swiezewska
Journal:  J Biol Chem       Date:  2008-05-23       Impact factor: 5.157

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