Literature DB >> 1442897

Parental sex effect in spina bifida: a role for genomic imprinting?

S Chatkupt1, P R Lucek, M R Koenigsberger, W G Johnson.   

Abstract

Fifty families (491 individuals in 137 sibships) with more than one living case of isolated, nonsyndromic spina bifida (SB) were analyzed genetically. There were twice as many gene-carrier females (56) as gene-carrier males (28) (P < 0.005). This was not an artifact of ascertainment bias because the sex ratio of gene-carriers was the same whether the pedigree was obtained through the proband's father or mother. Also, this effect was not observed in other disorders analyzed by the same method. Neither was the effect due to differential fertility because the number and sex of affected and unaffected children per gene-carrier parent were not different for male or female gene-carrier parents. There was no evidence that the missing male gene-carriers were lost by selective spontaneous abortion. There was no deficit of male-to-male or male-to-female transmission, excluding simple X-linked or simple mitochondrial inheritance. If genomic imprinting plays a role in the unequal female and male carrier frequencies in SB, penetrance should differ with parental sex. Penetrance was higher for offspring of female parents than of male parents, but the difference was not statistically significant. In addition, both male and female gene-carriers were frequently found in the same pedigree. Thus, the present data suggest a possible role for imprinting in SB.

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Year:  1992        PMID: 1442897     DOI: 10.1002/ajmg.1320440426

Source DB:  PubMed          Journal:  Am J Med Genet        ISSN: 0148-7299


  14 in total

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4.  Detection of parent-of-origin effects for quantitative traits using general pedigree data.

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5.  Segregation distortion in the offspring of Afro-American fathers with postaxial polydactyly.

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7.  Birth defects among maternal first cousins in Irish families with a neural tube defect.

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8.  A frameshift mutation in the gene for PAX3 in a girl with spina bifida and mild signs of Waardenburg syndrome.

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9.  Further evidence for a maternal genetic effect and a sex-influenced effect contributing to risk for human neural tube defects.

Authors:  Kristen L Deak; Deborah G Siegel; Timothy M George; Simon Gregory; Allison Ashley-Koch; Marcy C Speer
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10.  Detection of parent-of-origin effects based on complete and incomplete nuclear families with multiple affected children.

Authors:  Ji-Yuan Zhou; Yue-Qing Hu; Shili Lin; Wing K Fung
Journal:  Hum Hered       Date:  2008-10-17       Impact factor: 0.444

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