A new genomic mechanism leading to cri‐du‐chat syndrome

Новый геномный механизм, приводящий к синдрому кошачьего крика
Sarah T. South, Jeffrey Swensen, Teresa M. Maxwell, Alan F. Rope, Arthur R. Brothman, Zhong Chen
2006-11-13

cri-du-chat syndromefluorescence in situ hybridizationintrachromosomal insertionparacentric inversionterminal deletion
Using standard banding techniques, a within-arm intrachromosomal insertion can be mistakenly interpreted as a paracentric inversion. The need to correctly distinguish between these two types of chromosome rearrangements is emphasized by their different reproductive risks. For carriers of an intrachromosomal insertion, the empiric risk of having a liveborn child with a recombinant chromosome leading to a genetic imbalance is at least 15%, whereas the risk for a carrier of a paracentric inversion having a liveborn child with a recombinant chromosome leading to a genetic imbalance is thought to be practically negligible. We report a unique observation in which a paracentric inversion in the short arm of chromosome 5, 46,XX,inv(5)(p13.3p15.3), was identified in a women who had a daughter with an apparently terminal deletion in the distal short arm of chromosome 5, 46,XX,del(5)(p14.3), and the clinical diagnosis of cri-du-chat syndrome. We further characterized the rearrangement, and fluorescence in situ hybridization (FISH) and microsatellite analyses confirmed the paracentric inversion in the mother and showed the deletion in the daughter was maternal in origin. Therefore, this represents a case in which a confirmed paracentric inversion likely resulted in a viable terminal deletion. We propose a mechanism involving dicentric chromosome formation with subsequent breakage and telomere healing during meiosis. This illustrates a new genomic mechanism of chromosome rearrangement leading to cri-du-chat syndrome and should provide significant information for the medical management of patients with other terminal deletion syndromes.
1
A mother carrying a confirmed chromosome 5 paracentric inversion, 46,XX,inv(5)(p13.3p15.3), had a daughter with a maternal terminal 5p deletion and cri-du-chat syndrome.
2
A proposed mechanism involves meiotic dicentric chromosome formation followed by breakage and telomere healing, providing a new pathway to cri-du-chat syndrome.
3
FISH and microsatellite analyses established the maternal origin of the daughter’s deletion and confirmed the mother’s paracentric inversion.
4
Standard banding can misclassify within-arm intrachromosomal insertions as paracentric inversions, despite their substantially different reproductive risks.
5
The case indicates that a confirmed paracentric inversion can rarely produce a viable terminal deletion, challenging the assumption that recombinant imbalance risk is practically negligible.

A maternal paracentric inversion in the short arm of chromosome 5 and the resulting maternal terminal 5p deletion in a daughter with cri-du-chat syndrome

The meiotic mechanism by which a confirmed paracentric inversion produces a viable terminal deletion through dicentric chromosome formation, breakage, and telomere healing

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2006-11-13
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Sarah T. South
Jeffrey Swensen
Teresa M. Maxwell
Alan F. Rope
Arthur R. Brothman
Zhong Chen
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