Literature DB >> 3435449

Structure and lipid distribution of polyenoic very-long-chain fatty acids in the brain of peroxisome-deficient patients (Zellweger syndrome).

P Sharp1, A Poulos, A Fellenberg, D Johnson.   

Abstract

The polyenoic fatty acids with carbon chain lengths from 26 to 38 (very-long-chain fatty acids, VLCFA) previously detected in abnormal amounts in Zellweger syndrome brain have been shown to be n-6 derivatives and therefore probably derived by chain elongation of shorter-chain n-6 fatty acids such as linoleic acid and arachidonic acid. Polyenoic VLCFA are also present in Zellweger syndrome liver, but this tissue differs significantly from brain in that the saturated and mono-unsaturated derivatives are the major VLCFA. Zellweger syndrome brain polyenoic VLCFA are present in the neutral lipids predominantly in cholesterol esters, with smaller amounts in the non-esterified fatty acid and triacylglycerol fractions. These fatty acids are barely detectable in any of the major phospholipids, but are present in significant amounts in an unidentified minor phospholipid. The polyenoic VLCFA composition of this lipid differs markedly from that observed for all other lipids, as it contains high proportions of pentaenoic and hexaenoic fatty acids with 34, 36 and 38 carbon atoms. A polar lipid with the chromatographic properties in normal brain contains similar fatty acids. It is postulated that the polyenoic VLCFA may play an important role in normal brain and accumulate in Zellweger syndrome brain because of a deficiency in the peroxisomal beta-oxidation pathway, although a possible peroxisomal role in the control of carbon-chain elongation cannot be discounted.

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Year:  1987        PMID: 3435449      PMCID: PMC1148500          DOI: 10.1042/bj2480061

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  29 in total

1.  The enzymatic synthesis of plasmalogens.

Authors:  J Y KIYASU; E P KENNEDY
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2.  Cerebro-hepato-renal syndrome of Zellweger. A report of eight cases with comments upon the incidence, the liver lesion, and a fault in pipecolic acid metabolism.

Authors:  D M Danks; P Tippett; C Adams; P Campbell
Journal:  J Pediatr       Date:  1975-03       Impact factor: 4.406

3.  Fatty acid abnormality in adrenoleukodystrophy.

Authors:  M Igarashi; H H Schaumburg; J Powers; Y Kishmoto; E Kolodny; K Suzuki
Journal:  J Neurochem       Date:  1976-04       Impact factor: 5.372

4.  Peroxisomal and mitochondrial defects in the cerebro-hepato-renal syndrome.

Authors:  S Goldfischer; C L Moore; A B Johnson; A J Spiro; M P Valsamis; H K Wisniewski; R H Ritch; W T Norton; I Rapin; L M Gartner
Journal:  Science       Date:  1973-10-05       Impact factor: 47.728

5.  Cerebro-hepato-renal (Zellweger) syndrome and neonatal adrenoleukodystrophy: similarities in phenotype and accumulation of very long chain fatty acids.

Authors:  F R Brown; A J McAdams; J W Cummins; R Konkol; I Singh; A B Moser; H W Moser
Journal:  Johns Hopkins Med J       Date:  1982-12

Review 6.  Supply of polyenoic fatty acids to the mammalian brain: the ease of conversion of the short-chain essential fatty acids to their longer chain polyunsaturated metabolites in liver, brain, placenta and blood.

Authors:  J M Naughton
Journal:  Int J Biochem       Date:  1981

7.  Adrenoleukodystrophy: elevated C26 fatty acid in cultured skin fibroblasts.

Authors:  H W Moser; A B Moser; N Kawamura; J Murphy; K Suzuki; H Schaumburg; Y Kishimoto
Journal:  Ann Neurol       Date:  1980-06       Impact factor: 10.422

8.  The biosynthesis of delta-9,12,15,18-tetracosatetraenoic and of delta-6,9,12,15,18-tetracosapentaenoic acids by rat testes.

Authors:  R B Bridges; J G Coniglio
Journal:  J Biol Chem       Date:  1970-01-10       Impact factor: 5.157

9.  Fatty acid composition of human colostrum and mature breast milk.

Authors:  R A Gibson; G M Kneebone
Journal:  Am J Clin Nutr       Date:  1981-02       Impact factor: 7.045

10.  A two-dimensional thin-layer chromatographic procedure for the estimation of plasmalogens.

Authors:  K Owens
Journal:  Biochem J       Date:  1966-08       Impact factor: 3.857

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  14 in total

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2.  Metabolism of trideuterated iso-lignoceric acid in rats in vivo and in human fibroblasts in culture.

Authors:  A Poulos; P C Stockham; D W Johnson; B C Paton; K Beckman; H Singh
Journal:  Lipids       Date:  1999-09       Impact factor: 1.880

Review 3.  On the molecular etiology of decreased arachidonic (20:4n-6), docosapentaenoic (22:5n-6) and docosahexaenoic (22:6n-3) acids in Zellweger syndrome and other peroxisomal disorders.

Authors:  J P Infante; V A Huszagh
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4.  Metabolism of saturated and polyunsaturated fatty acids by normal and Zellweger syndrome skin fibroblasts.

Authors:  J M Street; D W Johnson; H Singh; A Poulos
Journal:  Biochem J       Date:  1989-06-15       Impact factor: 3.857

5.  alpha-Synuclein abnormalities in mouse models of peroxisome biogenesis disorders.

Authors:  Eugenia Yakunin; Ann Moser; Virginie Loeb; Ann Saada; Phyllis Faust; Denis I Crane; Myriam Baes; Ronit Sharon
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6.  Effect of tetracosahexaenoic acid on the content and release of histamine, and eicosanoid production in MC/9 mouse mast cell.

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Review 7.  Very long chain fatty acids in higher animals--a review.

Authors:  A Poulos
Journal:  Lipids       Date:  1995-01       Impact factor: 1.880

8.  Occurrence of unusual molecular species of sphingomyelin containing 28-34-carbon polyenoic fatty acids in ram spermatozoa.

Authors:  A Poulos; D W Johnson; K Beckman; I G White; C Easton
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9.  Unique molecular species of phosphatidylcholine containing very-long-chain (C24-C38) polyenoic fatty acids in rat brain.

Authors:  B S Robinson; D W Johnson; A Poulos
Journal:  Biochem J       Date:  1990-02-01       Impact factor: 3.857

10.  Effects of aging on the content, composition and synthesis of sphingomyelin in the central nervous system.

Authors:  N M Giusto; M E Roque; M G Ilincheta de Boschero
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