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Peter Pearson

Publications and source records attributed to Peter Pearson.

4 recordsLinked to original sources

Multiple supernumerary ring chromosomes of different origin in a patient: a clinical report and review of the literature.

We describe a patient with multiple congenital abnormalities exhibiting 2-5 supernumerary chromosomes per cells. A variety of FISH techniques were used to demonstrate that the markers are probably rings, lack detectable telomere sequences, and originate from different non-acrocentric chromosomes, namely 6, 7, 10, 12, and 19. Such cases are extremely rare and this is only the 8th published report of an individual presenting three or more supernumerary chromosomes. We reviewed all available cases of multiple supernumerary chromosomes and the collective data indicate that multiple markers seem always to be rings of different origin. These results provide evidence that such multiple ring markers cannot possibly represent duplication or recurrence of an original structural rearrangement but must be derived with a common causality from different chromosomes. Possible mechanisms for the simultaneous production of multiple rings from different chromosomes are proposed, including the breakdown and rearrangement of a haploid complement shortly after fertilization in a triploid zygote.

Abnormalities, Multiple↗

Spectrum of genetic changes in gastro-esophageal cancer cell lines determined by an integrated molecular cytogenetic approach.

Adenocarcinomas arising around the gastro-esophageal junction (GEJ) are highly malignant, and their incidence has risen rapidly in the last decades. Cell lines are the basic in vitro system for functional and therapeutic studies in GEJ tumors, but only a small number of cell lines are currently available, and none of them has been fully karyotyped. We analyzed 5 GEJ tumor cell lines using a combination of 24-color fluorescence in situ hybridization (FISH), comparative genomic hybridization (CGH) and genomic microarrays. Using CGH we demonstrated that these cell lines present imbalances similar to those we had previously observed in primary GEJ tumors, namely gains on 1q, 7q, 8q, 17q, 19q, 20, and X, and losses on 3p, 4, 5q, 9p, 18q, and 21. Multicolor FISH karyotyping revealed multiple structural rearrangements involving chromosomes 1, 5, 6, 7, 8, 9, 13, 17, 18, and 22. Rearrangements of chromosome 8 involved 10 different chromosomes, while rearrangements of chromosome 17 involved 5. Different rearrangements resulted in imbalances of similar chromosome regions, suggesting that similar genomic imbalances are constitutively important but are achieved through different pathways. The use of a commercially available genomic array excluded TOP2A (17q), and MYBL2, PTPT1, CSE1L, and ZNF217 (20q) as candidate genes for frequently amplified areas on these chromosomes, and contributed to refining the limits of chromosome regions involved in genomic imbalances.

Adenocarcinoma↗