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PMID: 9353282 Published · ppublish English Journal Article

Fah1p, a Saccharomyces cerevisiae cytochrome b5 fusion protein, and its Arabidopsis thaliana homolog that lacks the cytochrome b5 domain both function in the alpha-hydroxylation of sphingolipid-associated very long chain fatty acids.

The Journal of biological chemistry ·Vol. 272 ·No. 45 ·1997-11-07 ·Pages 28281-8

Mitchell AG, Martin CE

Abstract

A search of the Saccharomyces cerevisiae genome data base for cytochrome b5-like sequences identified a 1.152-kilobase pair open reading frame, located on chromosome XIII at locus YMR272C (FAH1). That gene encodes a putative 384-amino acid protein with an amino-terminal cytochrome b5 domain. The b5 core domain shows a 52% identity and 70% similarity to that of the yeast microsomal cytochrome b5 and a 35% identity and 54% similarity to the b5 core domain of OLE1, the S. cerevisiae Delta-9 fatty acid desaturase. Expression of the S. cerevisiae FAH1 cytochrome b5 domain in Escherichia coli produces a soluble protein that exhibits the typical oxidized versus reduced differential absorbance spectra of cytochrome b5. Sequence analysis of Fah1p reveals other similarities to Ole1p. Both proteins are predicted to have two hydrophobic domains, each capable of spanning the membrane twice, and both have the HX(2-3)(XH)H motifs that are characteristic of membrane-bound fatty acid desaturases. These similarities to Ole1p suggested that Fah1p played a role in the biosynthesis or modification of fatty acids. Disruption of the FAH1 gene in S. cerevisiae did not give any visible phenotype, and there was no observable difference in content or distribution of the most abundant long chain saturated and unsaturated 14-18-carbon fatty acid species. Northern blot analysis, however, showed that this gene is expressed at much lower levels ( approximately 150-fold) than the OLE1 gene, suggesting that it might act on a smaller subset of fatty acids. Analysis of sphingolipid-derived very long chain fatty acids revealed an approximately 40-fold reduction of alpha-HO 26:0 and a complementary increase in 26:0 in the gene-disrupted fah1Delta strain. GAL1 expression of the S. cerevisiae FAH1 genes in the fah1Delta strain restores alpha-HO 26:0 fatty acids to wild type levels. Also identified are a number of homologs to this gene in other species. Expression of an Arabidopsis thaliana FAH1 gene, which does not contain the cytochrome b5 domain, in the fah1Delta strain produced an approximately 25-fold increase in alpha-HO 26:0 and reduced the levels of its 26-carbon precursor, suggesting that it functions in very long chain fatty acid hydroxylation using an alternate electron transfer mechanism.

MeSH Terms
Amino Acid Sequence Arabidopsis Arabidopsis Proteins Base Sequence Binding Sites Crystallography, X-Ray Cytochrome P-450 Enzyme System Cytochromes b5/metabolism Fatty Acids/metabolism Hydroxylation Mixed Function Oxygenases/chemistry,genetics,metabolism Molecular Sequence Data Open Reading Frames Plant Proteins/chemistry,genetics,metabolism Protein Conformation Saccharomyces cerevisiae Sequence Alignment Sequence Homology, Amino Acid Sequence Homology, Nucleic Acid Sphingolipids/metabolism
Chemicals
Arabidopsis Proteins Fatty Acids Plant Proteins Sphingolipids Cytochromes b5 Cytochrome P-450 Enzyme System Mixed Function Oxygenases CYP84A1 protein, Arabidopsis
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Mitchell A G
Department of Biological Sciences and the Bureau of Biological Research, Rutgers University, Nelson Laboratories, P.O. Box 1059, Piscataway, New Jersey 08855-1059, USA.
Martin C E
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1997-11-07
Pages
28281-8
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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