Markedly inhibited 7-dehydrocholesterol-delta 7-reductase activity in liver microsomes from Smith-Lemli-Opitz homozygotes. 1995

S Shefer, and G Salen, and A K Batta, and A Honda, and G S Tint, and M Irons, and E R Elias, and T C Chen, and M F Holick
UMD-New Jersey Medical School, Newark 07103, USA.

We investigated the enzyme defect in late cholesterol biosynthesis in the Smith-Lemli-Opitz syndrome, a recessively inherited developmental disorder characterized by facial dysmorphism, mental retardation, and multiple organ congenital anomalies. Reduced plasma and tissue cholesterol with increased 7-dehydrocholesterol concentrations are biochemical features diagnostic of the inherited enzyme defect. Using isotope incorporation assays, we measured the transformation of the precursors, [3 alpha- 3H]lathosterol and [1,2-3H]7-dehydrocholesterol into cholesterol by liver microsomes from seven controls and four Smith-Lemli-Opitz homozygous subjects. The introduction of the double bond in lathosterol at C-5[6] to form 7-dehydrocholesterol that is catalyzed by lathosterol-5-dehydrogenase was equally rapid in controls and homozygotes liver microsomes (120 +/- 8 vs 100 +/- 7 pmol/mg protein per min, P = NS). In distinction, the reduction of the double bond at C-7 [8] in 7-dehydrocholesterol to yield cholesterol catalyzed by 7-dehydrocholesterol-delta 7-reductase was nine times greater in controls than homozygotes microsomes (365 +/- 23 vs 40 +/- 4 pmol/mg protein per min, P < 0.0001). These results demonstrate that the pathway of lathosterol to cholesterol in human liver includes 7-dehydrocholesterol as a key intermediate. In Smith-Lemli-Opitz homozygotes, the transformation of 7-dehydrocholesterol to cholesterol by hepatic microsomes was blocked although 7-dehydrocholesterol was produced abundantly from lathosterol. Thus, lathosterol 5-dehydrogenase is equally active which indicates that homozygotes liver microsomes are viable. Accordingly, microsomal 7-dehydrocholesterol-delta 7-reductase is inherited abnormally in Smith-Lemli-Opitz homozygotes.

UI MeSH Term Description Entries
D008862 Microsomes, Liver Closed vesicles of fragmented endoplasmic reticulum created when liver cells or tissue are disrupted by homogenization. They may be smooth or rough. Liver Microsomes,Liver Microsome,Microsome, Liver
D010088 Oxidoreductases The class of all enzymes catalyzing oxidoreduction reactions. The substrate that is oxidized is regarded as a hydrogen donor. The systematic name is based on donor:acceptor oxidoreductase. The recommended name will be dehydrogenase, wherever this is possible; as an alternative, reductase can be used. Oxidase is only used in cases where O2 is the acceptor. (Enzyme Nomenclature, 1992, p9) Dehydrogenases,Oxidases,Oxidoreductase,Reductases,Dehydrogenase,Oxidase,Reductase
D002784 Cholesterol The principal sterol of all higher animals, distributed in body tissues, especially the brain and spinal cord, and in animal fats and oils. Epicholesterol
D005260 Female Females
D006720 Homozygote An individual in which both alleles at a given locus are identical. Homozygotes
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D044925 Oxidoreductases Acting on CH-CH Group Donors A subclass of enzymes which includes all dehydrogenases acting on carbon-carbon bonds. This enzyme group includes all the enzymes that introduce double bonds into substrates by direct dehydrogenation of carbon-carbon single bonds. Oxidoreductases Acting on CH CH Group Donors
D019082 Smith-Lemli-Opitz Syndrome An autosomal recessive disorder of CHOLESTEROL metabolism. It is caused by a deficiency of 7-dehydrocholesterol reductase, the enzyme that converts 7-dehydrocholesterol to cholesterol, leading to an abnormally low plasma cholesterol. This syndrome is characterized by multiple CONGENITAL ABNORMALITIES, growth deficiency, and INTELLECTUAL DISABILITY. 7-Dehydrocholesterol Reductase Deficiency,Hyperotosis Corticalis Generalisata Familiaris,Lethal Acrodysgenital Syndrome,Polydactyly, Sex Reversal, Renal Hypoplasia, And Unilobar Lung,RSH Syndrome,RSH-SLO Syndrome,Rutledge Friedman Harrod Syndrome,Rutledge Lethal Multiple Congenital Anomaly Syndrome,SLO Syndrome,Smith Lemli Opitz syndrome, type 1,Smith-Lemli-Opitz Syndrome, Type 1,Smith-Lemli-Opitz Syndrome, Type 2,Smith-Lemli-Opitz Syndrome, Type I,Smith-Lemli-Opitz Syndrome, Type II,7-Dehydrocholesterol Reductase Deficiencies,Acrodysgenital Syndrome, Lethal,Acrodysgenital Syndromes, Lethal,Deficiencies, 7-Dehydrocholesterol Reductase,Deficiency, 7-Dehydrocholesterol Reductase,Lethal Acrodysgenital Syndromes,RSH SLO Syndrome,RSH Syndromes,RSH-SLO Syndromes,Reductase Deficiencies, 7-Dehydrocholesterol,Reductase Deficiency, 7-Dehydrocholesterol,SLO Syndromes,Smith Lemli Opitz Syndrome,Smith Lemli Opitz Syndrome, Type 2,Smith Lemli Opitz Syndrome, Type I,Smith Lemli Opitz Syndrome, Type II,Syndrome, Lethal Acrodysgenital,Syndrome, RSH,Syndrome, SLO,Syndromes, RSH,Syndromes, SLO

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