Open access · OA
via OpenAlex
Identification of a new inborn error in bile acid synthesis: mutation of the oxysterol 7alpha-hydroxylase gene causes severe neonatal liver disease.
Kenneth D.R. Setchell, Margrit Schwarz, Nancy C. O’Connell, Erik Lund, Daphne L. Davis, Richard Lathe, Henry R. Thompson, R. Weslie Tyson, Ronald J. Sokol, David W. Russell
Journal of Clinical Investigation · 1998 · ▲ 376 citations
Abstract
We describe a metabolic defect in bile acid synthesis involving a deficiency in 7alpha-hydroxylation due to a mutation in the gene for the microsomal oxysterol 7alpha-hydroxylase enzyme, active in the acidic pathway for bile acid synthesis. The defect, identified in a 10-wk-old boy presenting with severe cholestasis, cirrhosis, and liver synthetic failure, was established by fast atom bombardment ionization-mass spectrometry, which revealed elevated urinary bile acid excretion, a mass spectrum with intense ions at m/z 453 and m/z 510 corresponding to sulfate and glycosulfate conjugates of unsaturated monohydroxy-cholenoic acids, and an absence of primary bile acids. Gas chromatography-mass spectrometric analysis confirmed the major products of hepatic synthesis to be 3beta-hydroxy-5-cholenoic and 3beta-hydroxy-5-cholestenoic acids, which accounted for 96% of the total serum bile acids. Levels of 27-hydroxycholesterol were > 4,500 times normal. The biochemical findings were consistent with a deficiency in 7alpha-hydroxylation, leading to the accumulation of hepatotoxic unsaturated monohydroxy bile acids. Hepatic microsomal oxysterol 7alpha-hydroxylase activity was undetectable in the patient. Gene analysis revealed a cytosine to thymidine transition mutation in exon 5 that converts an arginine codon at position 388 to a stop codon. The truncated protein was inactive when expressed in 293 cells. These findings indicate the quantitative importance of the acidic pathway in early life in humans and define a further inborn error in bile acid synthesis as a metabolic cause of severe cholestatic liver disease.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1172/jci2962
- Canonical
- link ↗
- Fetched
- 2026-06-24 MST
Cite this
APA
Setchell, K.D., Schwarz, M., O’Connell, N.C., Lund, E., Davis, D.L., Lathe, R., Thompson, H.R., Tyson, R.W., Sokol, R.J., & Russell, D.W. (1998). Identification of a new inborn error in bile acid synthesis: mutation of the oxysterol 7alpha-hydroxylase gene causes severe neonatal liver disease. <em>Journal of Clinical Investigation</em>. https://doi.org/10.1172/jci2962
Vancouver
Setchell KD, Schwarz M, O’Connell NC, Lund E, Davis DL, Lathe R, et al. Identification of a new inborn error in bile acid synthesis: mutation of the oxysterol 7alpha-hydroxylase gene causes severe neonatal liver disease. Journal of Clinical Investigation. 1998. doi:10.1172/jci2962.
BibTeX
@article{kenneth1998Identi,
title = {Identification of a new inborn error in bile acid synthesis: mutation of the oxysterol 7alpha-hydroxylase gene causes severe neonatal liver disease.},
author = {Kenneth D.R. Setchell and Margrit Schwarz and Nancy C. O’Connell and Erik Lund and Daphne L. Davis and Richard Lathe and Henry R. Thompson and R. Weslie Tyson and Ronald J. Sokol and David W. Russell},
journal = {Journal of Clinical Investigation},
year = {1998},
doi = {10.1172/jci2962},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Nature Communications 2014
Open access · CC-BY
Dynamic DNA methylation orchestrates cardiomyocyte development, maturation and disease
Gut 1996
Open access · OA
Delta 4-3-oxosteroid 5 beta-reductase deficiency: failure of ursodeoxycholic acid treatment and response to chenodeoxycholic acid plus cholic acid.
Human Molecular Genetics 2004
Open access · OA
A mouse model for α-methylacyl-CoA racemase deficiency: adjustment of bile acid synthesis and intolerance to dietary methyl-branched lipids
Biology of Reproduction 2015
Open access · OA
The Role of Placental 11-Beta Hydroxysteroid Dehydrogenase Type 1 and Type 2 Methylation on Gene Expression and Infant Birth Weight1
Human Molecular Genetics 2014
Preprint · OA
A novel bile acid biosynthesis defect due to a deficiency of peroxisomal ABCD3
Aging Cell 2022
Open access · CC-BY