Literature DB >> 8554361

Severe microcephaly with normal intellectual development: the Nijmegen breakage syndrome.

A J Green1, J R Yates, A M Taylor, P Biggs, G M McGuire, C M McConville, C J Billing, N D Barnes.   

Abstract

A brother and sister are described with severe microcephaly of prenatal onset, normal intellectual and motor development, chromosomal breakage and cellular immunodeficiency, which is characteristic of the autosomal recessive condition, Nijmegen breakage syndrome. The proband was a girl who presented at 15 months, with normal developmental milestones and an extremely small head circumference of 36 cm. Twenty per cent of her lymphocytes showed spontaneous translocations involving chromosome 7p13, 7q35, 14q11, and 14q32. The lymphocytes also showed excessive x ray induced chromosome damage. She had T cell lymphopenia, but normal immunoglobulins, and a normal alpha fetoprotein. A brother was born shortly after her diagnosis was made. He also had extreme microcephaly of 28 cm, with similar spontaneous and x ray induced chromosomal breakage, and T cell lymphopenia. Neither child has clinical evidence of immunodeficiency. To test the hypothesis that Nijmegen breakage syndrome and ataxia telangiectasia are allelic disorders, haplotype analysis was carried out in the family using DNA markers spanning the AT locus on chromosome 11q22. The affected boy had a different haplotype from his affected sister. Thus in this family, the Nijmegen breakage syndrome is not allelic to the ataxia telangiectasia locus on chromosome 11q, and the two conditions are genetically distinct. The normal intellect in these children raises questions about normal brain development in the presence of severe microcephaly.

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Year:  1995        PMID: 8554361      PMCID: PMC1511390          DOI: 10.1136/adc.73.5.431

Source DB:  PubMed          Journal:  Arch Dis Child        ISSN: 0003-9888            Impact factor:   3.791


  18 in total

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Authors:  T Foroud; S Wei; Y Ziv; E Sobel; E Lange; A Chao; T Goradia; Y Huo; A Tolun; L Chessa; P Charmley; O Sanal; N Salman; C Julier; P Concannon; C McConville; A M Taylor; Y Shiloh; S K Lange; R A Gatti
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2.  A chromosomal breakage syndrome with profound immunodeficiency.

Authors:  M E Conley; N B Spinner; B S Emanuel; P C Nowell; W W Nichols
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3.  Patients with an inherited syndrome characterized by immunodeficiency, microcephaly, and chromosomal instability: genetic relationship to ataxia telangiectasia.

Authors:  N G Jaspers; R D Taalman; C Baan
Journal:  Am J Hum Genet       Date:  1988-01       Impact factor: 11.025

4.  Further delineation of the Nijmegen breakage syndrome.

Authors:  R D Taalman; T W Hustinx; C M Weemaes; E Seemanová; A Schmidt; E Passarge; J M Scheres
Journal:  Am J Med Genet       Date:  1989-03

Review 5.  A new chromosomal instability disorder confirmed by complementation studies.

Authors:  R D Wegner; M Metzger; F Hanefeld; N G Jaspers; C Baan; K Magdorf; J Kunze; K Sperling
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6.  A new chromosome instability disorder.

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7.  Genetic complementation analysis of ataxia telangiectasia and Nijmegen breakage syndrome: a survey of 50 patients.

Authors:  N G Jaspers; R A Gatti; C Baan; P C Linssen; D Bootsma
Journal:  Cytogenet Cell Genet       Date:  1988

8.  Chromosome instability and X-ray hypersensitivity in a microcephalic and growth-retarded child.

Authors:  G Barbi; J M Scheres; D Schindler; R D Taalman; K Rodens; K Mehnert; M Müller; H Seyschab
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Review 9.  Familial microcephaly with normal intelligence in a patient with acute lymphoblastic leukemia.

Authors:  D Heney; R Mueller; G Turner; G Karbani; J Cadranel; I J Lewis; C C Bailey
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10.  ATFresno: a phenotype linking ataxia-telangiectasia with the Nijmegen breakage syndrome.

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  9 in total

1.  Nijmegen breakage syndrome cells fail to induce the p53-mediated DNA damage response following exposure to ionizing radiation.

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2.  Lymphoma Secondary to Congenital and Acquired Immunodeficiency Syndromes at a Turkish Pediatric Oncology Center.

Authors:  Hikmet G Tanyildiz; Handan Dincaslan; Gulsan Yavuz; Emel Unal; Aydan Ikinciogulları; Figen Dogu; Nurdan Tacyildiz
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3.  Genetic mapping using microcell-mediated chromosome transfer suggests a locus for Nijmegen breakage syndrome at chromosome 8q21-24.

Authors:  S Matsuura; C Weemaes; D Smeets; H Takami; N Kondo; S Sakamoto; N Yano; A Nakamura; H Tauchi; S Endo; M Oshimura; K Komatsu
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Review 4.  Nijmegen breakage syndrome. The International Nijmegen Breakage Syndrome Study Group.

Authors: 
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5.  Abnormalities in the T and NK lymphocyte phenotype in patients with Nijmegen breakage syndrome.

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Journal:  Clin Exp Immunol       Date:  2003-12       Impact factor: 4.330

6.  Fine localization of the Nijmegen breakage syndrome gene to 8q21: evidence for a common founder haplotype.

Authors:  K M Cerosaletti; E Lange; H M Stringham; C M Weemaes; D Smeets; B Sölder; B H Belohradsky; A M Taylor; P Karnes; A Elliott; K Komatsu; R A Gatti; M Boehnke; P Concannon
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Review 7.  Nijmegen breakage syndrome (NBS).

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8.  Nijmegen breakage syndrome detected by newborn screening for T cell receptor excision circles (TRECs).

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Review 9.  DNA Damage as a Driver for Growth Delay: Chromosome Instability Syndromes with Intrauterine Growth Retardation.

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  9 in total

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