NPC1: Complete genomic sequence, mutation analysis, and characterization of haplotypes
- 12 December 2001
- journal article
- research article
- Published by Wiley in Human Mutation
- Vol. 19 (1) , 30-38
- https://doi.org/10.1002/humu.10016
Abstract
Niemann‐Pick type C disease (NP‐C) is a rare, autosomal recessive lipid storage disorder. At least 96% of all NP‐C patients link to NPC1 which encodes for a lysosomally‐targeted protein. We describe the complete genomic sequence of 57,052 kb corresponding to the transcribed region of human NPC1 including several exonic and intronic single nucleotide polymorphisms (SNPs). Sequencing of all exons, splice sites, and the promoter region of NPC1 in 12 unrelated Caucasian NP‐C patients revealed nine novel and four known most likely disease‐causing mutations. Ten unique mutations found only once in 24 disease alleles were observed in patients being compound heterozygous for two different mutations. Two of the three missense mutations identified more than once were observed in a total of four patients homozygous for the respective mutation along with homozygosity for the underlying haplotype. The patients were offspring of most likely nonconsanguineous couples. Based upon genotyping exonic SNPs c.2572A>G (I858V; g.45020A>G) and c.2793C>T (N931N; g.45686C>T) and segregation analysis we characterized the haplotype of all 24 NPC1 alleles and of 138 alleles of healthy Caucasian control subjects. All four permutations between the two SNPs were identified in the control alleles: 2572A‐2793C (50%), 2572G‐2793T (41%), 2572G‐2793C (5%), and 2572A‐2793T (4%). These data are suggestive for an ancestral intragenic recombination within a genomic fragment of p=0.007; 2‐sided Fisher exact test) suggesting the possibility of an influence of the haplotypic background on expression of missense mutations in NPC1. Hum Mutat 19:30–38, 2002.Keywords
This publication has 26 references indexed in Scilit:
- Niemann-Pick C1 Disease: Correlations between NPC1 Mutations, Levels of NPC1 Protein, and Phenotypes Emphasize the Functional Significance of the Putative Sterol-Sensing Domain and of the Cysteine-Rich Luminal LoopAmerican Journal of Human Genetics, 2001
- Transmembrane Molecular Pump Activity of Niemann-Pick C1 ProteinScience, 2000
- Topological Analysis of Niemann-Pick C1 Protein Reveals That the Membrane Orientation of the Putative Sterol-sensing Domain Is Identical to Those of 3-Hydroxy-3-methylglutaryl-CoA Reductase and Sterol Regulatory Element Binding Protein Cleavage-activating ProteinJournal of Biological Chemistry, 2000
- Mutation nomenclature extensions and suggestions to describe complex mutations: A discussionHuman Mutation, 1999
- Niemann-Pick C1 Disease: The I1061T Substitution Is a Frequent Mutant Allele in Patients of Western European Descent and Correlates with a Classic Juvenile PhenotypeAmerican Journal of Human Genetics, 1999
- Mutations in NPC1 Highlight a Conserved NPC1-Specific Cysteine-Rich DomainAmerican Journal of Human Genetics, 1999
- The Nova Scotia (Type D) Form of Niemann-Pick Disease Is Caused by a G3097→T Transversion in NPC1American Journal of Human Genetics, 1998
- PCR-Assisted cDNA Cloning: A Guided Tour of the MinefieldBioTechniques, 1998
- Niemann-Pick C1 Disease Gene: Homology to Mediators of Cholesterol HomeostasisScience, 1997
- A simple salting out procedure for extracting DNA from human nucleated cellsNucleic Acids Research, 1988