Literature DB >> 10588719

The DNMT3B DNA methyltransferase gene is mutated in the ICF immunodeficiency syndrome.

R S Hansen1, C Wijmenga, P Luo, A M Stanek, T K Canfield, C M Weemaes, S M Gartler.   

Abstract

DNA methylation is an important regulator of genetic information in species ranging from bacteria to humans. DNA methylation appears to be critical for mammalian development because mice nullizygous for a targeted disruption of the DNMT1 DNA methyltransferase die at an early embryonic stage. No DNA methyltransferase mutations have been reported in humans until now. We describe here the first example of naturally occurring mutations in a mammalian DNA methyltransferase gene. These mutations occur in patients with a rare autosomal recessive disorder, which is termed the ICF syndrome, for immunodeficiency, centromeric instability, and facial anomalies. Centromeric instability of chromosomes 1, 9, and 16 is associated with abnormal hypomethylation of CpG sites in their pericentromeric satellite regions. We are able to complement this hypomethylation defect by somatic cell fusion to Chinese hamster ovary cells, suggesting that the ICF gene is conserved in the hamster and promotes de novo methylation. ICF has been localized to a 9-centimorgan region of chromosome 20 by homozygosity mapping. By searching for homologies to known DNA methyltransferases, we identified a genomic sequence in the ICF region that contains the homologue of the mouse Dnmt3b methyltransferase gene. Using the human sequence to screen ICF kindreds, we discovered mutations in four patients from three families. Mutations include two missense substitutions and a 3-aa insertion resulting from the creation of a novel 3' splice acceptor. None of the mutations were found in over 200 normal chromosomes. We conclude that mutations in the DNMT3B are responsible for the ICF syndrome.

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Year:  1999        PMID: 10588719      PMCID: PMC24450          DOI: 10.1073/pnas.96.25.14412

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  39 in total

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5.  alpha-satellite DNA methylation in normal individuals and in ICF patients: heterogeneous methylation of constitutive heterochromatin in adult and fetal tissues.

Authors:  P Miniou; M Jeanpierre; D Bourc'his; A C Coutinho Barbosa; V Blanquet; E Viegas-Péquignot
Journal:  Hum Genet       Date:  1997-06       Impact factor: 4.132

6.  Multibranched chromosomes 1, 9, and 16 in a patient with combined IgA and IgE deficiency.

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Authors:  W Ji; R Hernandez; X Y Zhang; G Z Qu; A Frady; M Varela; M Ehrlich
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Review 10.  An epigenetic perspective on the free radical theory of development.

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