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Accumulation of aberrant Y chromosomes in γ-ray–induced thymic lymphomas lacking p53

✍ Scribed by Daizen Chou; Jun Matsuki; Yuko Saitou; Shin-ichi Kosugi; Toshimitsu Shinbo; Fumitake Gejyo; Ohtsura Niwa; Ryo Kominami


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
119 KB
Volume
26
Category
Article
ISSN
0899-1987

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✦ Synopsis


Male F 1 hybrids between MSM mice carrying a deficient p53 allele and BALB/c mice were irradiated with g-rays, and 80 thymic lymphomas were obtained, 46 of which developed in mice carrying the deficient p53 allele. Because the Y chromosome contributes little to cellular function, the stability of the Y chromosome in the tumors was assessed by polymerase chain reaction by examining three genes: Smcy and Sry on the short arm and Sts in the pseudoautosomal region of the long arm of the Y chromosome. Twenty-one lymphomas had lost one or two genes, probably as a result of mitotic recombination or interstitial deletion, whereas no lymphomas had lost all three genes. The p53 status of the lymphomas was determined by genotyping and allelic loss analysis; 34 had retained two wild-type p53 alleles, suggesting normal function; 34 had lost both alleles, indicating loss of function; and the other 12 had at least one wild-type p53 allele, so their p53 status was unclear. Compilation of these data revealed that changes in the Y chromosome were detected in only two of the 34 lymphomas retaining functional p53 but in 18 of the 34 lymphomas lacking p53 function, suggesting that p53 deficiency leads to an increase in the accumulation of radiation-induced aberrant chromosomes. This is consistent with our previous result from analysis of the inactive X chromosome. In contrast, a decrease in the fidelity of mitotic transmission in p53-deficient lymphomas was not noted for the Y chromosome.


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Accumulation of recombinant chromosomes
✍ Norihiko Koide; Yasuo Matsumoto; Shin-ichi Kosugi; Daizen Chou; Kunio Sakai; Kat 📂 Article 📅 1999 🏛 John Wiley and Sons 🌐 English ⚖ 197 KB

F 1 offspring of male MSM male mice with a p53-deficient (knockout) allele and normal female BALB/c mice were backcrossed with MSM mice to produce N 2 mice. Female F 1 and N 2 mice were irradiated with γ-radiation, and thymic lymphomas were obtained from 69 F 1 and 82 N 2 mice heterozygous for X chr