Literature DB >> 8020891

The effect of increased hepatic sitosterol on the regulation of 3-hydroxy-3-methylglutaryl-coenzyme A reductase and cholesterol 7 alpha-hydroxylase in the rat and sitosterolemic homozygotes.

S Shefer1, G Salen, J Bullock, L B Nguyen, G C Ness, Z Vhao, P F Belamarich, I Chowdhary, S Lerner, A K Batta.   

Abstract

We investigated hepatic cholesterol homeostasis in four homozygous sitosterolemic subjects from two unrelated families who showed enhanced absorption, diminished removal and increased tissue and plasma concentrations of sitosterol (24-ethyl cholesterol). Measurements of hepatic 3-hydroxy-3-methylglutaryl coenzyme A reductase activities were correlated with steady state messenger RNA levels and related to cholesterol 7 alpha-hydroxylase activities in the sitosterolemic homozygotes and nine controls. Similar determinations were made in rats infused intravenously with sitosterol so that hepatic and plasma sitosterol concentrations increased to about 10% of total sterols to resemble the human disease sitosterolemia. In the four sitosterolemic homozygotes, hepatic 3-hydroxy-3-methylglutaryl coenzyme A reductase activities were markedly reduced (12% of normal), and steady state 3-hydroxy-3-methylglutaryl coenzyme A reductase messenger RNA levels barely detected. In contrast, hepatic 3-hydroxy-3-methylglutaryl coenzyme A reductase activities and messenger RNA levels were not decreased in rats with similarly elevated hepatic sitosterol concentrations. However, hepatic cholesterol 7 alpha-hydroxylase activity was inhibited 30% in both the sitosterolemic homozygotes and rats with high liver sitosterol concentrations. Plasma cholesterol concentrations increased 120% in the sitosterol-infused rats and 29% in the untreated human homozygotes. These results demonstrate that high-tissue sitosterol concentrations do not inhibit hepatic 3-hydroxy-3-methylglutaryl coenzyme A reductase activityor steady state messenger RNA levels and that they competitively block cholesterol 7 alpha-hydroxylase activity and raise plasma cholesterol levels. Thus the deficiency of 3-hydroxy-3-methylglutaryl coenzyme A reductase in the liver of sitosterolemic homozygotes is inherited and not due to the hepatic accumulation of sitosterol.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1994        PMID: 8020891     DOI: 10.1016/0270-9139(94)90155-4

Source DB:  PubMed          Journal:  Hepatology        ISSN: 0270-9139            Impact factor:   17.425


  10 in total

Review 1.  Abnormal cholesterol biosynthesis in sitosterolaemia and the Smith-Lemli-Opitz syndrome.

Authors:  G Salen; S Shefer; A K Batta; G S Tint; G Xu; A Honda
Journal:  J Inherit Metab Dis       Date:  1996       Impact factor: 4.982

2.  High-resolution physical and transcript map of human chromosome 2p21 containing the sitosterolaemia locus.

Authors:  K Lu; M H Lee; J D Carpten; M Sekhon; S B Patel
Journal:  Eur J Hum Genet       Date:  2001-05       Impact factor: 4.246

Review 3.  Genetic basis of sitosterolemia.

Authors:  M H Lee; K Lu; S B Patel
Journal:  Curr Opin Lipidol       Date:  2001-04       Impact factor: 4.776

4.  Inhibition of cholesterol biosynthesis by Delta22-unsaturated phytosterols via competitive inhibition of sterol Delta24-reductase in mammalian cells.

Authors:  Carlos Fernández; Yajaira Suárez; Antonio J Ferruelo; Diego Gómez-Coronado; Miguel A Lasunción
Journal:  Biochem J       Date:  2002-08-15       Impact factor: 3.857

5.  Mapping a gene involved in regulating dietary cholesterol absorption. The sitosterolemia locus is found at chromosome 2p21.

Authors:  S B Patel; G Salen; H Hidaka; P O Kwiterovich; A F Stalenhoef; T A Miettinen; S M Grundy; M H Lee; J S Rubenstein; M H Polymeropoulos; M J Brownstein
Journal:  J Clin Invest       Date:  1998-09-01       Impact factor: 14.808

6.  Biliary cholesterol excretion: a novel mechanism that regulates dietary cholesterol absorption.

Authors:  E Sehayek; J G Ono; S Shefer; L B Nguyen; N Wang; A K Batta; G Salen; J D Smith; A R Tall; J L Breslow
Journal:  Proc Natl Acad Sci U S A       Date:  1998-08-18       Impact factor: 11.205

Review 7.  Phytosterols in the prevention of human pathologies.

Authors:  H Tapiero; D M Townsend; K D Tew
Journal:  Biomed Pharmacother       Date:  2003-10       Impact factor: 6.529

Review 8.  Diagnosis and management of familial dyslipoproteinemias.

Authors:  Peter O Kwiterovich
Journal:  Curr Cardiol Rep       Date:  2013-06       Impact factor: 2.931

9.  Dietary xenosterols lead to infertility and loss of abdominal adipose tissue in sterolin-deficient mice.

Authors:  Curzio Solca; G Stephen Tint; Shailendra B Patel
Journal:  J Lipid Res       Date:  2012-11-23       Impact factor: 5.922

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

Authors:  S Shefer; G Salen; A K Batta; A Honda; G S Tint; M Irons; E R Elias; T C Chen; M F Holick
Journal:  J Clin Invest       Date:  1995-10       Impact factor: 14.808

  10 in total

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