| Literature DB >> 21450060 |
Maria Sobol1, Niklas Dahl, Joakim Klar.
Abstract
BACKGROUND: Ichthyosis Prematurity Syndrome (IPS) is an autosomal recessive disorder characterized by premature birth, non-scaly ichthyosis and atopic manifestations. The disease was recently shown to be caused by mutations in the gene encoding the fatty acid transport protein 4 (FATP4) and a specific reduction in the incorporation of very long chain fatty acids (VLCFA) into cellular lipids.Entities:
Year: 2011 PMID: 21450060 PMCID: PMC3072334 DOI: 10.1186/1756-0500-4-90
Source DB: PubMed Journal: BMC Res Notes ISSN: 1756-0500
Mutations in the FATP4 gene identified in probands from five IPS families.
| Patient family ID | Exon | Nucleotide change | Amino-acid change | Zygosity | Origin |
|---|---|---|---|---|---|
| exon3 | c.504c>a | p.C168X* | compound heterozygous | Norway | |
| exon2 | c.103g>t | p.G35X | compound heterozygous | Norway | |
| exon3 | c.504c>a | p.C168X* | compound heterozygous | Norway | |
| exon3 | c.504c > a | p.C168X* | homozygous | Iceland | |
| exon3 | c.504c>a | p.C168X* | compound heterozygous | Denmark |
Family origin and zygosity of the identified mutations. The nucleotide and amino-acid change is indicated and the corresponding exon. *denotes previously published in Klar et al 2009.
Figure 1Family pedigrees, mutation traces and positions of predicted amino acid substitutions in FATP4. Multiple sequence alignment is shown of FATP4 protein with orthologs from different species and with the FATP family of proteins. (a) Pedigrees of three of the five families from which healthy family members were available showing the segregation of mutations and IPS (b) Sequence chromatograms of the five mutations identified (c) Schematic overview of FATP4 functional domains; the N-terminal transmembrane region (TM), the ER localization signal (ERx; aa 47-102), the ATP/AMP motif involved in ATP binding and adenylate formation (ATP/AMP; aa 243-345) and the conserved FATP motif of importance for fatty acid binding (FATP; aa 500-551). The arrows indicate positions of the mutated amino acid residues reported herein associated with IPS (d) Multiple sequence alignment of selected regions of the human FATP4 protein and Fatp4 proteins from mouse and dog. Arrows indicate the position of the missense mutations at conserved residues (e) Multiple sequence alignment of FATP4 protein with the human FATP family of proteins (FATP1, FATP2, FATP3, FATP5, and FATP6). The positions of the missense mutations are indicated by arrows