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1.
J Biol Chem ; 285(2): 866-77, 2010 Jan 08.
Artículo en Inglés | MEDLINE | ID: mdl-19903819

RESUMEN

Glycerolipids are structural components for membranes and serve in energy storage. We describe here the use of a photodynamic selection technique to generate a population of Chinese hamster ovary cells that display a global deficiency in glycerolipid biosynthesis. One isolate from this population, GroD1, displayed a profound reduction in the synthesis of phosphatidylcholine, phosphatidylethanolamine, and triglycerides but presented high levels of phosphatidic acid and normal levels of phosphatidylinositol synthesis. This was accompanied by a reduction in phosphatidate phosphatase 1 (PAP1) activity. Expression cloning and sequencing of the cDNA obtained from GroD1 revealed a point mutation, Gly-189 --> Glu, in glucose-6-phosphate isomerase (GPI), a glycolytic enzyme involved in an inherited disorder that results in anemia and neuromuscular symptoms in humans. GPI activity was reduced by 87% in GroD1. No significant differences were found in DNA synthesis, protein synthesis, and ATP levels, whereas glycerol 3-phosphate levels were increased in the mutant. Expression of wild-type hamster GPI restored GPI activity, glycerolipid biosynthesis, and PAP1 activity in GroD1. Two additional, independently isolated GPI-deficient mutants displayed similar phenotypes with respect to PAP1 activity and glycerolipid biosynthesis. These findings uncover a novel relationship between GPI, involved in carbohydrate metabolism, and PAP1, a lipogenic enzyme. These results may also help to explain neuromuscular symptoms associated with inherited GPI deficiency.


Asunto(s)
Glucosa-6-Fosfato Isomerasa/metabolismo , Fosfolípidos/biosíntesis , Triglicéridos/biosíntesis , Anemia/enzimología , Anemia/genética , Animales , Antígenos de Neoplasias/genética , Antígenos de Neoplasias/metabolismo , Biomarcadores de Tumor/genética , Biomarcadores de Tumor/metabolismo , Células CHO , Cricetinae , Cricetulus , Glucosa-6-Fosfato Isomerasa/genética , Humanos , Lectinas Tipo C/genética , Lectinas Tipo C/metabolismo , Errores Innatos del Metabolismo/enzimología , Errores Innatos del Metabolismo/genética , Enfermedades Neuromusculares/enzimología , Enfermedades Neuromusculares/genética , Proteínas Asociadas a Pancreatitis , Fosfolípidos/genética , Mutación Puntual , Triglicéridos/genética
2.
J Lipid Res ; 46(4): 727-35, 2005 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-15687349

RESUMEN

The variant CHO-K1 cell line, NRel-4, is unable to synthesize plasmalogens because of a severe reduction in dihydroxyacetonephosphate acyltransferase (DHAPAT) activity (Nagan, N., A. K. Hajra, L. K. Larkins, P. Lazarow, P. E. Purdue, W. B. Rizzo, and R. A. Zoeller. 1998. Isolation of a Chinese hamster fibroblast variant defective in dihydroxyacetonephosphate acyltransferase activity and plasmalogen biosynthesis: use of a novel two-step selection protocol. Biochem. J. 332: 273-279). Northern analysis demonstrated that the loss of this activity was attributable to a severe reduction in mRNA levels for DHAPAT. Transfection of NRel-4 cells with a plasmid bearing the human DHAPAT cDNA recovered DHAPAT activity and plasmalogen biosynthesis. Examination of clonal isolates from the transfected population showed that recovery of as little as 10% of wild-type DHAPAT activity restored plasmalogen levels to 55% of normal, whereas in one isolate, NRel-4.15, which overexpressed DHAPAT activity by 6-fold over wild-type cells, plasmalogen levels were returned only to wild-type values. Although the rate of plasmenylethanolamine biosynthesis was restored in NRel-4.15, the biosynthesis of nonether glycerolipids was either decreased or unaffected, suggesting that peroxisomal DHAPAT does not normally contribute to nonether glycerolipid biosynthesis. These data demonstrate that a defect in the gene that codes for peroxisomal DHAPAT is the primary lesion in the NRel-4 cell line and that the peroxisomal DHAPAT is essential for the biosynthesis of plasmalogens in animal cells.


Asunto(s)
Aciltransferasas/metabolismo , Glicerofosfolípidos/biosíntesis , Glicerofosfolípidos/química , Plasmalógenos/biosíntesis , Aciltransferasas/genética , Animales , Células CHO , Cricetinae , Etanolamina/clasificación , Etanolamina/metabolismo , Humanos , Plasmalógenos/química , Plasminógeno/deficiencia , Plasminógeno/genética , Plasminógeno/metabolismo , Transfección
3.
J Lipid Res ; 44(1): 182-92, 2003 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-12518037

RESUMEN

Plasmalogens are a major sub-class of ethanolamine and choline phospholipids in which the sn-1 position has a long chain fatty alcohol attached through a vinyl ether bond. These phospholipids are proposed to play a role in membrane fusion-mediated events. In this study, we investigated the role of the ethanolamine plasmalogen plasmenylethanolamine (PlsEtn) in intracellular cholesterol transport in Chinese hamster ovary cell mutants NRel-4 and NZel-1, which have single gene defects in PlsEtn biosynthesis. We found that PlsEtn was essential for specific cholesterol transport pathways, those from the cell surface or endocytic compartments to acyl-CoA/cholesterol acyltransferase in the endoplasmic reticulum. The movement of cholesterol from the endoplasmic reticulum or endocytic compartments to the cell surface was normal in PlsEtn-deficient cells. Also, vesicle trafficking was normal in PlsEtn-deficient cells, as measured by fluid phase endocytosis and exocytosis, as was the movement of newly-synthesized proteins to the cell surface. The mutant cholesterol transport phenotype was due to the lack of PlsEtn, since it was corrected when NRel-4 cells were transfected with a cDNA encoding the missing enzyme or supplied with a metabolic intermediate that enters the PlsEtn biosynthetic pathway downstream of the defect. Future work must determine the precise role that plasmalogens have on cholesterol transport to the endoplasmic reticulum.


Asunto(s)
Colesterol/metabolismo , Plasmalógenos/metabolismo , Transporte Biológico , Membrana Celular/metabolismo , Células Cultivadas , Endocitosis , Retículo Endoplásmico/metabolismo , Esterificación , Exocitosis , Filipina , Lisosomas/metabolismo , Microscopía Fluorescente , Estructura Molecular , Plasmalógenos/biosíntesis
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