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Linkage of familial hemophagocytic lymphohistiocytosis (FHL) type-4 to chromosome 6q24 and identification of mutations in syntaxin 11

Item Type:Article
Title:Linkage of familial hemophagocytic lymphohistiocytosis (FHL) type-4 to chromosome 6q24 and identification of mutations in syntaxin 11
Creators Name:zur Stadt, U. and Schmidt, S. and Kasper , B. and Beutel, K. and Diler, A.S. and Henter, J.I. and Kabisch, H. and Schneppenheim, R. and Nuernberg, P. and Janka, G. and Hennies, H.C.
Abstract:Familial hemophagocytic lymphohistiocytosis (FHL) is a rare autosomal recessive disorder characterized by hyperactive phagocytes and defects in natural killer cell function. It has been shown previously that mutations in the perforin 1 gene (PRF1) and in UNC13D are associated with FHL2 and FHL3, respectively, indicating genetic heterogeneity. We performed genome-wide homozygosity mapping in a large consanguineous Kurdish kindred with five children affected with FHL. Linkage to a 10 cM region on chromosome 6q24 between D6S1569 and D6S960 defined a novel FHL locus. By screening positional candidate genes, we identified a homozygous deletion of 5 bp in the syntaxin 11 gene (STX11) in this family. We could demonstrate that syntaxin 11 protein was absent in the mononuclear cell fraction of patients with the homozygous 5 bp deletion. In addition to this family, we found homozygous mutations in STX11 in five consanguineous Turkish/Kurdish FHL kindreds including two families with the 5 bp deletion, one family with a large 19.2 kb genomic deletion spanning the entire coding region of STX11 (exon 2) and two families with a nonsense mutation that leads to a premature stop codon in the C-terminal end of the protein. As both STX11 and UNC13D are involved in vesicle trafficking and membrane fusion, we conclude that, besides mutations in perforin 1, defects in the endocytotic or the exocytotic pathway may be a common mechanism in FHL.
Keywords:Linkage, Membrane Proteins, Nonsense Codon, Non-Langerhans-Cell Histiocytosis, Pair 6 Human Chromosomes, Pedigree, Qa-SNARE Proteins, Sequence Deletion
Source:Human Molecular Genetics
ISSN:0964-6906
Publisher:Oxford University Press
Volume:14
Number:6
Page Range:827-834
Date:1 January 2005
Official Publication:https://doi.org/10.1093/hmg/ddi076
PubMed:View item in PubMed

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