Abstract
A clinical and molecular analysis of 439 individuals affected with myotonic dystrophy, from 101 kindreds, has shown that the size of the unstable CTG repeat detected in nearly all cases of myotonic dystrophy is related both to age at onset of the disorder and to the severity of the phenotype. The largest repeat sizes (1.5-6.0 kb) are seen in patients with congenital myotonic dystrophy, while the minimally affected patients have repeat sizes of < 0.5 kb. Comparison of parent-child pairs has shown that most offspring have an earlier age at onset and a larger repeat size than their parents, with only 4 of 182 showing a definite decrease in repeat size, accompanied by a later age at onset or less severe phenotype. Increase in repeat size from parent to child is similar for both paternal and maternal transmissions when the increase is expressed as a proportion of the parental repeat size. Analysis of congenitally affected cases shows not only that they have, on average, the largest repeat sizes but also that their mothers have larger mean repeat sizes, supporting previous suggestions that a maternal effect is involved in the pathogenesis of this form of the disorder.
MeSH Terms
Adolescent
Adult
Aging/genetics
Child
Child, Preschool
DNA Mutational Analysis
Female
Humans
Infant
Infant, Newborn
Male
Middle Aged
Myotonic Dystrophy/congenital,genetics
Parents
Phenotype
Repetitive Sequences, Nucleic Acid
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Harley H G
Institute of Medical Genetics, University of Wales College of Medicine, Heath Park, Cardiff, United Kingdom.
Rundle S A
MacMillan J C
Myring J
Brook J D
Crow S
Reardon W
Fenton I
Shaw D J
Harper P S
References (20)
20 references, click to expand
-
Genealogical reconstruction of myotonic dystrophy in the Saguenay-Lac-Saint-Jean area (Quebec, Canada).
Neurology. 1990 May;40(5):839-42
PMID: 2330114
-
Anticipation in myotonic dystrophy: fact or fiction?
Brain. 1989 Jun;112 ( Pt 3):779-97
PMID: 2731029
-
Fragile X genotype characterized by an unstable region of DNA.
Science. 1991 May 24;252(5009):1179-81
PMID: 2031189
-
Genetic risks for children of women with myotonic dystrophy.
Am J Hum Genet. 1991 Jun;48(6):1084-91
PMID: 2035529
-
Detection of linkage disequilibrium between the myotonic dystrophy locus and a new polymorphic DNA marker.
Am J Hum Genet. 1991 Jul;49(1):68-75
PMID: 2063878
-
Myotonic dystrophy. Predictive value of normal results on clinical examination.
Brain. 1991 Oct;114 ( Pt 5):2303-11
PMID: 1933246
-
Molecular basis of myotonic dystrophy: expansion of a trinucleotide (CTG) repeat at the 3' end of a transcript encoding a protein kinase family member.
Cell. 1992 Feb 21;68(4):799-808
PMID: 1310900
-
Expansion of an unstable DNA region and phenotypic variation in myotonic dystrophy.
Nature. 1992 Feb 6;355(6360):545-6
PMID: 1346923
-
Detection of an unstable fragment of DNA specific to individuals with myotonic dystrophy.
Nature. 1992 Feb 6;355(6360):547-8
PMID: 1346924
-
Cloning of the essential myotonic dystrophy region and mapping of the putative defect.
Nature. 1992 Feb 6;355(6360):548-51
PMID: 1346925
-
Expansion of unstable DNA region in Japanese myotonic dystrophy patients.
Lancet. 1992 Mar 14;339(8794):692
PMID: 1347397
-
Myotonic dystrophy mutation: an unstable CTG repeat in the 3' untranslated region of the gene.
Science. 1992 Mar 6;255(5049):1253-5
PMID: 1546325
-
An unstable triplet repeat in a gene related to myotonic muscular dystrophy.
Science. 1992 Mar 6;255(5049):1256-8
PMID: 1546326
-
Unstable DNA sequence in myotonic dystrophy.
Lancet. 1992 May 9;339(8802):1125-8
PMID: 1349364
-
Anticipation in myotonic dystrophy: new light on an old problem.
Am J Hum Genet. 1992 Jul;51(1):10-6
PMID: 1609789
-
Five years experience of predictive testing for myotonic dystrophy using linked DNA markers.
Am J Med Genet. 1992 Aug 1;43(6):1006-11
PMID: 1415325
-
Minimal expression of myotonic dystrophy: a clinical and molecular analysis.
J Med Genet. 1992 Nov;29(11):770-3
PMID: 1453424
-
Evidence of founder chromosomes in fragile X syndrome.
Nat Genet. 1992 Jul;1(4):257-60
PMID: 1302021
-
Correlation between CTG trinucleotide repeat length and frequency of severe congenital myotonic dystrophy.
Nat Genet. 1992 Jun;1(3):192-5
PMID: 1303233
-
Instability of a 550-base pair DNA segment and abnormal methylation in fragile X syndrome.
Science. 1991 May 24;252(5009):1097-102
PMID: 2031184