Molecular and phenotypic mapping of the short arm of chromosome 5: sublocalization of the critical region for the cri-du-chat syndrome
Молекулярное и фенотипическое картирование короткого плеча хромосомы 5: сублокализация критической области синдрома кошачьего крика
1994-01-01
SCID: 54.1/a2ynjpk4
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5p15.2 critical region5p15.3 high-pitched crychromosome 5p deletionscri-du-chat syndromesomatic cell hybrids
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Abstract (AI)
Forty-nine individuals have been identified with deletions or translocations involving the short arm of chromosome 5. While most display the classical phenotype of the cri-du-chat syndrome, several of the patients do not have the syndrome or have only a subset of the clinical features. Somatic cell hybrids containing the deleted chromosome 5 were derived from each patient. Each somatic cell hybrid was analyzed at the DNA level using 136 chromosome 5p-specific DNA fragments. It was possible to unambiguously order most of the chromosomal breakpoints present in the somatic cell hybrids based on the hybridization patterns of Southern blots. Further comparisons between the deletions present in the patients and their clinical features identified several chromosomal regions that were involved in specific clinical features. A critical chromosomal region involved the high-pitched cry mapped to 5p15.3, while the chromosomal region involved in the remaining features of the cri-du-chat syndrome mapped to a small region within 5p15.2. Deletions that did not include these two chromosomal regions presented varying clinical phenotypes from severe mental retardation and microcephaly to a clinically normal phenotype. These results demonstrate the need for careful characterization of a 5p deletion in prenatal cases before clinical predictions are made.
Key Findings
1
A cohort of 49 individuals with chromosome 5p deletions or translocations was analyzed using somatic cell hybrids and 136 chromosome 5p-specific DNA fragments.
2
Deletions excluding both critical regions produced highly variable phenotypes, ranging from severe mental retardation and microcephaly to clinically normal development, emphasizing the need for detailed prenatal deletion characterization.
3
Most chromosomal breakpoints were unambiguously ordered from Southern blot hybridization patterns, enabling molecular mapping of the 5p abnormalities.
4
The critical region for the characteristic high-pitched cry of cri-du-chat syndrome was localized to chromosome region 5p15.3.
5
The region responsible for the remaining major cri-du-chat clinical features was mapped to a small segment within 5p15.2.
Research Object
Deletions and translocations involving the short arm of human chromosome 5 (5p) in individuals with or without cri-du-chat syndrome
Research Subject
Molecular and phenotypic mapping of 5p breakpoints and the chromosomal regions associated with the high-pitched cry and other clinical features of cri-du-chat syndrome
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1994-01-01
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