Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “PLASMALOGEN”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 667 records · Page 37Linked to original sources

Class F Thy-1-negative murine lymphoma cells are deficient in ether lipid biosynthesis.

The glycosyl phosphatidylinositol (PI) membrane anchors of several proteins contain 1-alkyl-2-acyl-glycerophosphoinositol. Although this PI analog has never been found free in cells, the presence of "alkyl-PI" as a component of some membrane anchors suggests its existence. The resistance of ether linkages to cleavage by mild alkali treatment was used to detect possible alkyl chains in the [3H]inositol-labeled phospholipids of several murine lymphoma cell lines which normally express the glycosyl PI-anchored protein Thy-1. One lipid, which arose from alkaline hydrolysis of PI and had mobility on thin layer chromatography similar to lyso-PI, was detected in all wild-type cell lines. Analysis of the base-stable inositol lipids of several lymphoma lines that are deficient in Thy-1 surface expression because of defective biosynthesis of the glycosyl PI membrane anchor revealed that the putative alkyl-PI was missing in the class F mutant. The levels of both the ethanolamine- and choline-containing plasmalogens were also decreased 10-fold in these cells, suggesting a general defect in the production of ether lipids. The activity of the peroxisomal form of dihydroxyacetonephosphate acyltransferase, which catalyzes the first step of ether lipid biosynthesis, was found to be 10-fold decreased relative to the wild-type level. Unlike previously described Chinese hamster ovary cell mutants deficient in ether lipids (Zoeller, R. A., and Raetz, C. R. H. (1986) Proc. Natl. Acad. Sci. U. S. A. 83, 5170-5174), the class F Thy-1- cells contain intact functional peroxisomes. Attempts to restore the putative alkyl-PI to the class F mutants by alkylglycerol supplementation were unsuccessful, despite concomitant restoration of the much larger plasmenylethanolamine pool, suggesting that there are some differences in the biosynthesis of this PI analog and plasmalogens that are presently not understood. Although the deficiencies in ether lipids and surface expression of Thy-1 in the class F mutants could also be due to separate mutations, our findings raise the possibility that alkyl-PI exists in animal cells and may be an obligate precursor for the biosynthesis of the glycosyl-PI membrane anchor of Thy-1.

Acyltransferases↗

Skeletal muscle lipids. 3. Changes in fatty acid composition of individual phosphoglycerides in man from fetal to middle age.

The fatty acids in cardiolipin, choline phosphoglyceride, ethanolamine phosphoglyceride, inositol phosphoglyceride, and serine phosphoglyceride in the human gastrocnemius muscle were studied for changes between early fetal age to middle age. In cardiolipin, choline phosphoglyceride, and ethanolamine phosphoglyceride, the relative total amount of the linoleic acid series increased considerably during the prenatal period and reached maximum values during the first year of life. In inositol phosphoglyceride and serine phosphoglyceride, only slight changes in the sum of fatty acids of the linoleic acid series were found. An increase in the concentration of fatty acids of the linolenic acid series was found in ethanolamine phosphoglyceride and serine phosphoglyceride, while only minor amounts of these fatty acids were present in choline phosphoglyceride and inositol phosphoglyceride and not at all in cardiolipin. During the period studied, the amount of plasmalogen in ethanolamine phosphoglyceride decreased slightly during the first year of life and then remained at 40%. The amount of plasmalogen increased in choline phosphoglyceride from 8% at the middle of the gestational period to 15% 1 yr after birth. The individual phospholipids were found to have characteristic fatty acid patterns.

Adolescent↗

Lipids of human leukocytes: relation to celltype.

Significant differences in lipid composition have been found between normal human lymphocytes and polymorphonuclear leukocytes (isolated from blood by means of glass-bead columns), abnormal leukocytes from patients with acute and chronic leukemia, and leukocytes from peritoneal exudates. Lipid extracts of isolated leukocytes were analyzed for total lipid, phosphorus, cholesterol, and plasmalogens. Individual phospholipids and neutral lipids were separated by thin-layer chromatography. The major phospholipids were phosphatidyl choline, ethanolamine glycerophosphatides, sphingomyelin, phosphatidyl serine, and phosphatidyl inositol. Plasmalogen was found mainly as phosphatidal ethanolamine. The neutral lipid fractions contained free cholesterol and various amounts of triglyceride, but little esterified cholesterol. Normal lymphocytes contained about half as much total lipid per cell as normal polymorphonuclear leukocytes, with a similar cholesterol:-lipid-P ratio but relatively more lecithin and less ethanolamine glycerophosphatide. Normal mature leukocytes, compared with immature cells of the same morphological series, had a higher total lipid content per cell, more cholesterol, and a higher ratio of cholesterol to lipid-P. Little difference was found in total lipid-P per cell, but mature cells contained relatively less lecithin and more sphingomyelin. These findings may reflect differences in the relative content of various intracellular organelles as well as possible differences in the quantity and composition of the plasma membrane.

Cholesterol↗

Phospholipids of Clostridium butyricum. IV. Analysis of the positional isomers of monounsaturated and cyclopropane fatty acids and alk-1'-enyl ethers by capillary column chromatography.

The positional isomers of the cyclopropane fatty acids of Clostridium butyricum phospholipids have been analyzed by capillary column gas-liquid chromatography. Greater than 95% of the methylenehexadecanoic acids was the 9,10 isomer. On the other hand, 60-70% of the hexadecenoic acid precursors was the Delta(7) isomer, and the remainder was the Delta(9) isomer. Of the methyleneoctadecanoic acids 75-80% was the 11,12 isomer, with the remainder being the 9,10 isomer. There were approximately equal amounts of the Delta(9)- and Delta(11)-octadecenoic acids in the phospholipids. This study reveals a surprisingly strong specificity of the cyclopropane synthetase for the (n-7) series of monoenoic fatty acids. An analysis by capillary column chromatography of the monoenoic and cyclopropane aldehyde dimethylacetals derived from the plasmalogens (1-alk-1'-enyl-2-acyl-glycero-phosphatides) of C. butyricum revealed the presence of the same positional isomeric mixtures of the 16- and 18-carbon monoenoic residues in approximately the same ratios as were found in the fatty acids. In the formation of the cyclopropane alk-1'-enyl ethers there was also specificity for the (n-7) series, but it was not as strong as that seen in the fatty acids. The ratio of the 7,8 isomer to the 9,10 isomer was higher in the methyl-enehexadecanals than in the corresponding fatty acids. This paper extends the use of Golay capillary columns to the analysis of the positional isomers of plasmalogen aldehydes as their dimethylacetal derivatives.

Aldehydes↗

The enzymes of phospholipid synthesis in Clostridium butyricum.

We have examined extracts of Clostridium butyricum for several enzymes of phospholipid synthesis. Membrane particles were shown to catalyze the formation of CDP-diglyceride from [3H]CTP and phosphatidic acid. The reaction was dependent on Mg2+ and stimulated by monovalent cations. CDP-diglyceride formed in vitro was found to be a substrate for both phosphatidylglycerophosphate synthetase and phosphatidylserine synthetase. The formation of phosphatidylglycerophosphate from added CDP-diglyceride and [U-14C]sn-glycerol-3-phosphate was dependent on Mg2+ and Triton X-100. The dephosphorylation of endogenously-generated phosphatidylglycerophosphate to yield phosphatidylglycerol was observed to be pH-dependent. The formation of phosphatidylserine from CDP-diglyceride and L-[3-14C]serine was stimulated by Mg2+ and Triton X-100. dCDP-diglyceride was a suitable substrate for both phosphatidylglycerophosphate synthetase and phosphatidylserine synthetase. Phosphatidylserine decarboxylase activity was barely detectable in membrane particles from C. butyricum. The addition of E. coli membrane particles provided efficient phosphatidylserine decarboxylase activity in this system. Although plasmalogens are the principal lipids of C. butyricum, none of the products of phospholipid synthesis formed in vitro contained measurable amounts of plasmalogens. The subcellular distribution of both phosphatidylglycerophosphate synthetase and phosphatidylserine synthetase in C. butyricum was also studied. Both were found to be membrane-associated.

CDPdiacylglycerol-Serine O-Phosphatidyltransferase↗

[Diagnosis of Zellweger's cerebrohepatorenal syndrome].

The cerebro-hepato-renal syndrome of Zellweger is an autosomal recessive inborn error of metabolism. Clinically the disease is characterised by craniofacial malformations, a lack of muscle tone, disturbances in liver function, renal cysts and mental retardation. The disease is characterised biochemically by the absence of peroxisomes (microbodies) in liver and kidney and variable abnormalities in mitochondria. This results in elevated concentrations of pipecolic acid and of tri(di)hydroxycoprostanoic acid in urine, CSF and/or duodenal fluid, an elevation of the concentration of very long chain (greater than C22) fatty acids in plasma and fibroblasts and a deficiency of plasmalogens in tissues, erythrocytes and fibroblasts. Moreover, we recently found that in Zellweger patients the activity of dihydroxyacetone phosphate acyltransferase is deficient in tissues, fibroblasts and cultured amniotic fluid cells and that the incorporation of a radioactive precursor of plasmalogens into phospholipids is impaired in fibroblasts and amniocytes. These recent findings allow specific prenatal and postnatal diagnosis of this disease.

Abnormalities, Multiple↗

Comparative study of the phospholipid composition of plasma membranes isolated from rat primary hepatomas induced by 3'-methyl-4-dimethylaminoazobenzene and from normal growing rat livers.

Plasma membranes (PM's) were isolated from primary hepatomas induced in Wistar rats by 3'-methyl-4-dimethylaminoazobenzene, from nonhepatomal regions of the same rat livers, and also from various normal rat livers, including the resting and regenerating livers of adult rats and developing livers of postnatal rats. Phospholipid analyses of these PM preparations revealed the following differences in the hepatoma PM in comparison with those of the PM of normal adult resting livers: (a) decrease in the content of total phospholipids; (b) large increase in plasmalogen content; (c) relative increase of sphingomyelin and ethanolamine phospholipids, and the decrease of choline phosphoglycerides, i.e., decrease of the ratios of choline phosphoglycerides to choline phosphosphingoside and of choline-containing phospholipids to ethanolamine-containing phospholipids; (d) decrease in phosphatidylserine and phosphatidylinositol. The phospholipid composition of the PM's from normal growing livers showed definite decreases in phosphatidylserine and sphingomyelin and increases in ethanolamine phospholipids; however, no significant alteration was observed in plasmalogen content in comparison to the PM of normal adult resting livers. The PM from the nonhepatomal regions of the hepatoma-bearing livers did not show those differences observed in hepatoma PM.

Animals↗

Red blood cell membrane phosphatidylethanolamine fatty acid content in various forms of retinitis pigmentosa.

In order to test the hypothesis that retinitis pigmentosa (RP) is associated with fatty acid abnormalities within cell membrane phospholipids, red blood cell membrane (RBC) phosphatidylethanolamine (PE) fatty acid content (% of total fatty acids) was measured using high performance liquid chromatography and capillary column gas chromatography in 155 patients from separate families with different genetic types of RP and 101 normal subjects. After controlling for the effects of age and sex, patients with all genetic forms of RP had significantly (P < 0.001) reduced mean RBC PE 22:6 omega 3 (n-3) (docosahexaenoic acid, DHA) content, and significantly (P < 0.001) elevated mean RBC PE dimethyl acetal (DMA) forms of 16:0, 18:0, and 18:1 omega 9 (n-9) as compared with normal subjects. RBC PE content of 22:5 omega 3 (n-3) (a precursor to DHA) and 18:2 omega 6 (n-6) (the major dietary essential fatty acid) were not significantly different in RP than in controls. Analysis by genetic types of RP showed that the mean RBC PE DHA percentages were significantly reduced by 24%, 14%, 30%, and 17%, respectively, in dominant, recessive, X-linked, and isolate forms of RP. The relative amounts of plasmalogens as indicated by DMA forms of 16:0 and 18:0 were significantly (P < 0.01) increased in dominant (by 33% and 25%), recessive (by 36% and 25%), and isolate cases (by 32% and 26%) of RP as compared with normal subjects. No such differences were seen in X-linked cases versus controls. Our data indicate that RBC PE DHA content is decreased in all genetic types of RP patients as compared to control subjects, and that RBC PE plasmalogens are increased in dominant, recessive, and isolate forms of RP. These data raise the possibility that membrane phospholipid fatty acid abnormalities may contribute to the pathogenesis of RP.

Acetals↗

Review: on the chemistry of oxidative stress.

Injury of plant cells as well as mammalian cells is connected with the activation of 'dormant' lipoxygenases. In the presence of oxygen, these enzymes are activated and enabled to catalyze the formation of hydroperoxides of linoleic and other polyunsaturated fatty acids. Reactivity of dormant lipoxygenases seems to be dependent on the carbon number between the alkyl end and the double bond situated next to this end in an unsaturated acid. In contrast to these dormant lipoxygenases there exists a second group of lipoxygenases, which are active in plant cells all the time, independent of an injury. They react mainly with acids possessing two homoconjugated double bonds within a distance of seven CH2 groups from the carboxylic end. Thus, they 'count' from the reverse end of the molecule. These lipoxygenases produce F-acids. They are converted, when plant cells are injured by hydroperoxides produced from unsaturated acids, into dioxoenoic acid intermediates which probably are used for defense. In mammalian tissues, lipoxygenases produce in the case of cell injury plasmalogen epoxides. These are analogous to dioxoenoic acids' highly reactive intermediates (in a chemical sense) which react immediately with nucleophiles. Such transformation of plasmalogens may be responsible for the development of chronic diseases, e.g., atherosclerosis, Alzheimer's disease and also for aging.

Animals↗

Variant rhizomelic chondrodysplasia punctata (RCDP) with normal plasma phytanic acid: clinico-biochemical delineation of a subtype and complementation studies.

Rhizomelic chondrodysplasia calcificans punctata (RCDP) is an autosomal recessive peroxisomal disorder which affects phytanic acid oxidation and de novo biosynthesis of plasmalogens in liver and fibroblasts. Peroxisomal thiolase is present in its unprocessed precursor form (44 kDa). We studied a mentally retarded 9-year-old girl with cataracts and atypical bone dysplasia. Neurological findings were mild compared to classic RCDP. Plasma phytanic acid was normal. Results of de novo plasmalogen synthesis and phytanic acid oxidation studied in cultured skin fibroblasts were intermediate between normal controls and classic RCDP. Peroxisomal thiolase was present only as the unprocessed 44 kDa protein. Taken together these results suggest that we are dealing with a variant form of RCDP with clinical and biochemical abnormalities much milder as compared to classic RCDP. In order to establish the genetic relationship between our patient and classic RCDP patients complementation studies were carried out. Earlier studies had already shown that fibroblasts from all RCDP patients studied belong to a single complementation group. Fibroblasts from our patient could also be assigned to this complementation group suggesting that the phenotypic variability results from different mutations within the same gene.

Cells, Cultured↗

Characterization of the molecular species of glycerophospholipids from rabbit kidney: an alternative approach to the determination of the fatty acyl chain position by negative ion fast atom bombardment combined with mass-analysed ion kinetic energy analysis.

An alternative approach to identifying fatty acid chain position in the molecular species of glycerophospholipids has been studied and developed. The fatty acyl groups esterified to the glycerol backbone in isomeric glycerophosphatidyl-choline, -serine and -ethanolamine as well as glycerophosphatidic acid can be detected by the presence of a pair of anions derived from phosphatidic acid parent ions (M minus the polar head groups in glycerophospholipids), designed to be [M--polar head--R2COOH]- and [M--polar head--R2CO--H]-, produced by negative ion fast atom bombardment combined with mass-analysed ion kinetic energy analysis. Because of the significant abundance of [M--polar head--R2COOH]- anion, fatty acid chains differing by 2 Da can be distinguished by accurate measurements of the electrostatic voltage related to this ion. Three-volt differences can be evidenced. Using this approach, the molecular species of glycerophosphatidyl-choline, -serine, -ethanolamine and -inositol from rabbit kidney were characterized after the separation of both class and species by normal and reversed-phase high-performance liquid chromatography, respectively. We identified 11 arachidonoyl-containing molecular species of glycerophospholipids and the other 17 lipid molecules in this biological material. A couple of 1- alkenyl-2-arachidonoyl-sn-glycerol-3-phosphoethanolamine species, identified as plasmalogen GPE 16:0-20:4 and plasmalogen GPE 18:0-20:4, were found for the first time in rabbit kidney.

Animals↗

Brain phospholipids and fatty acids in Friedreich's ataxia and spinocerebellar atrophy type-1.

Previous studies of patients with spinocerebellar atrophy type 1 (SCA-1) and Friedreich's ataxia (FA) have suggested the occurrence of membrane disturbances in both disorders. We measured concentrations of phosphatidylcholine (PC), diacyl and plasmalogen phosphatidylethanolamine (PE), and phosphatidylserine (PS), along with their fatty acid profiles, in the brains of eight patients with Friedreich's ataxia (FA) and nine patients with dominantly inherited spinocerebellar atrophy type 1 (SCA-1). Compared with the controls, levels of all phospholipid types (PE, PS, and PC) were reduced in the cerebellar but not occipital cortex of SCA-1 patients. In contrast, in the FA group, levels of PS and PE, but not PC, were reduced in both cerebellar and occipital cortices. The fatty acid composition of individual brain phospholipids was altered in both FA and SCA-1 patients, most markedly in the plasmalogen PE and PS classes of cerebellar phospholipids. Given the neuropathologic characteristics of each disorder, it is likely that altered fatty acid composition and phospholipid levels in SCA-1 cerebellar cortex occur as a consequence of pronounced cerebellar degeneration. In contrast, reduced phospholipid levels in FA cerebellar and occipital cortex, areas characterized by, at most, minimal neuronal loss in FA, may represent a widespread alteration in cellular phospholipid metabolism occurring in response to the specific gene defect in the disorder.

Adult↗

Analysis of phospholipids in brain tissue by 31P NMR at different compositions of the solvent system chloroform-methanol-water.

Brain phospholipids can be quantitated by high-resolution 31P NMR of crude brain tissue extracts in the solvent system chloroform-methanol-water (+EDTA) which was introduced recently (P. Meneses and T. Glonek, J. Lipid Res. 29, 679 (1988)). Phospholipid resonance positions depend on the type of tissue extract and on solvent composition. The effects of systematic variation of the solvent system on phospholipid NMR profiles are presented. Resolution can be optimized by adjustment of the solvent composition. Virtually all phospholipid classes can be resolved, and the major phospholipids in brain: sphingomyelin and phosphatidyl-choline, -serine, -inositol, -ethanolamine, and -ethanolamine plasmalogen can be quantitated easily. Additional resonances have been assigned to phosphatidylcholine plasmalogen, alkylacyl-phosphatidylcholine and phosphatidylinositolbisphosphate. NMR offers a rapid method for quantitative analysis of the phospholipid composition in brain tissue which requires minimum sample handling.

Aged↗

Quantitation of the diacyl, alkylacyl, and alk-1-enylacyl subclasses of choline glycerophospholipids by chemical dephosphorylation and benzoylation.

A method for the determination of the relative amounts of the diacyl, alkylacyl, and alk-1-enylacyl subclasses of choline glycerophospholipids by benzoolysis is described. The procedure consists of simply heating the phospholipid with benzoic anhydride in the presence of boric acid for 5 h at 100 degrees C, followed by reaction with 4-dimethylaminopyridine for 2 h at room temperature and HPLC analysis of the lipidic products formed. With model compounds of the three subclasses it is shown that diacyl- and alkylacylglycerophosphocholines are completely dephosphorylated by this procedure, yielding quantitatively the corresponding diacyl- and alkylacylglycerobenzoates. The same procedure applied to a model alk-1-enylacylglycerophosphocholine gives only 53.5% of dephosphorylation, while the dephosphorylated products in turn are quantitatively converted into the corresponding acylglycerodibenzoates. The latter figure is shown to be fairly reproducible. The reduced dephosphorylation rate of plasmalogens appears to be due to complete disruption of the vinyl ether bond. The liberated fatty aldehyde gives rise to an addition product with benzoic anhydride, which was identified by gas chromatography-mass spectrometry. It is demonstrated that acyl migration occurring during the benzoolysis does not interfere with the HPLC separation of the glycerobenzoates and dibenzoates derived from the three distinct subclasses. Results of subclass determinations by benzoolysis of several natural diradylglycerophosphocholines are in good accordance with literature values. The agreement between the plasmalogen contents, determined by benzoolysis and by phosphorus determination following exposure to HCl and separation by thin-layer chromatography, is satisfactory. The reliability of the benzoolysis method is generally discussed.

Chromatography, High Pressure Liquid↗

Etherphospholipid biosynthesis and dihydroxyactetone-phosphate acyltransferase: resolution of the genomic organization of the human gnpat gene and its use in the identification of novel mutations.

Etherphospholipids are characterised by the occurrence of an alkyl- or alkenyl-group at the sn-1 position of the glycerol backbone. Peroxisomes play an essential role in the formation of etherphospholipids since the first two enzymes of the biosynthetic pathway are strictly peroxisomal. The function of plasmalogens is still an enigma but the recent identification of patients suffering from an isolated defect in either dihydroxyacetone phosphate acyltransferase (GNPAT) or alkyldihydroxyacetone phosphate synthase provides conclusive evidence that plasmalogens play an essential role for human survival and functioning. In this paper we report the complete genomic organisation of the GNPAT gene coding for the peroxisomal dihydroxyacetone phosphate acyltransferase. The gene is located on chromosome 1q42.12-43. It spans approximately 28 kb and consists of 16 exons and 15 introns. This information was used to analyse the GNPAT gene in 12 patients with GNPAT deficiency. All patients analysed were found to have mutations in their GNPAT gene. Of the 9 different mutations found, 2 were missense mutations, 2 small deletions, 1 insertion and 3 mutations were within splice donor/acceptor-sites. Another mutation created an alternative splice donor-site causing the partial deletion of an exon. The data obtained provide conclusive evidence for the major role of GNPAT in etherphospholipid biosynthesis.

Acyltransferases↗

Molecular defects in sarcolemmal glycerophospholipid subclasses in diabetic cardiomyopathy.

Although still scarcely studied, the phospholipid component of the cell membrane is of absolute importance for cell function. Experimental evidence indicates that individual molecular species of a given phospholipid can influence specific membrane functions. We have examined the changes in molecular species of diacyl and alkenylacyl choline/ethanolamine glycerophospholipid subclasses and those of phosphatidylserine in purified cardiac sarcolemma of healthy and streptozotocin-induced insulin dependent diabetic rats without or with insulin treatment. The relative content of plasmalogens increased in all the phospholipid classes of diabetic sarcolemma under study. Phosphatidylcholine and phosphatidylethanolamine were mostly enriched with molecular species containing linoleic acid in sn-2 position and deprived of the molecular species containing arachidonic acid. The molecular species of phosphatidylserine containing either arachidonic or docosahexaenoic acid were less abundant in membranes from diabetic rats than in membranes from controls. Insulin treatment of diabetic rats restored the species profile of phosphatidylethanolamine and overcorrected the changes in molecular species of phosphatidylcholine. The results suggest that the high sarcolemmal level of plasmalogens and the abnormal molecular species of glycerophospholipids may be critical for the membrane dysfunction and defective contractility of the diabetic heart.

Animals↗

A milder variant of Zellweger syndrome.

A 4.5-year-old male patient is described with chorioretinopathy, minor facial anomalies, delayed closure of the fontanel, mental retardation, moderate hypotonia, epilepsy and hepatic fibrosis. Postural control, intentional vocalising and manual dexterity were superior to the performance of patients with classical Zellweger syndrome (ZS). Morphologically distinct peroxisomes were absent in the liver. In blood elevated pipecolic acid levels and abnormal levels of bile acid intermediates were found. The plasmalogen content of erythrocytes was normal. In fibroblasts we found an accumulation of very long chain fatty acids, decreased activity of acyl CoA:dihydroxyacetone phosphate acyltransferase, and impaired de novo biosynthesis of plasmalogens. On the basis of these clinical, ultrastructural and biochemical characteristics we assume that this patient represents a milder variant of the classical cerebro-hepato-renal syndrome of Zellweger.

Abnormalities, Multiple↗

Zellweger syndrome in a preterm, small for gestational age infant.

A preterm (gestational age 34 weeks), small for gestational age infant (birth weight less than P2,3) is described. Because of unexplained slightly disturbed liver function tests at age 2 months, extensive metabolic examinations were performed. Elevated blood levels of very long-chain fatty acids, pipecolic acid and abnormal levels of bile acid intermediates were detected, suggesting a peroxisomal disorder. The plasmalogen content of erythrocytes was decreased. Morphologically distinct peroxisomes were absent in the liver. In fibroblasts an accumulation of very long-chain fatty acids, decreased activity of acyl-CoA:dihydroxyacetone phosphate acyltransferase and impaired de novo biosynthesis of plasmalogens was found. In summary, a mild variant of the classical cerebro-hepato-renal syndrome of Zellweger was found without the characteristic clinical facial signs.

Bile Acids and Salts↗