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Published on: September 8, 2021
Complicated biallelic inactivation of Pten in radiation-induced mouse thymic lymphomas
Yu Yamaguchi1, Takashi Takabatake, Shizuko Kakinuma
1Department of Biology, Graduate School of Science, Chiba University, Yayoicho, Inage-ku, Chiba 263-8522, Japan.
Abstract:
Inactivation of the phosphatase and tensin homolog gene (Pten) occurs via multiple tissue-dependent mechanisms including epigenetic silencing, point mutations, insertions, and deletions. Although frequent loss of heterozygosity around the Pten locus and plausible involvement of epigenetic silencing have been reported in radiation-induced thymic lymphomas, the proportion of lymphomas with inactivated Pten and the spectrum of causal aberrations have not been extensively characterized. Here, we assessed the mode of Pten inactivation by comprehensive analysis of the expression and alteration of Pten in 23 radiation-induced thymic lymphomas developed in B6C3F1 mice. We found no evidence for methylation-associated silencing of Pten; rather, complex structural abnormalities comprised of missense and nonsense mutations, 1- and 3-bp insertions, and focal deletions were identified in 8 of 23 lymphomas (35%). Sequencing of deletion breakpoints suggested that aberrant V(D)J recombination and microhomology-mediated rearrangement were responsible for the focal deletions. Seven of the 8 lymphomas had biallelic alterations, and 4 of them did not express Pten protein. These Pten aberrations coincided with downstream Akt phosphorylation. In conclusion, we demonstrate that Pten inactivation is frequently biallelic and is caused by a variety of structural abnormalities (rather than by epigenetic silencing) and is involved in radiation-induced lymphomagenesis.
Insights
Inactivation of the phosphatase and tensin homolog (Pten) gene in radiation-induced lymphomas is frequently caused by structural abnormalities, not epigenetic silencing. These Pten gene alterations are often biallelic and impact tumor development.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The phosphatase and tensin homolog (Pten) gene is crucial in tumor suppression.
- Pten inactivation mechanisms vary, but their role in radiation-induced thymic lymphomas is not fully understood.
Purpose of the Study:
- To comprehensively analyze Pten inactivation in radiation-induced thymic lymphomas.
- To determine the spectrum of Pten alterations and their frequency in these lymphomas.
Main Methods:
- Analysis of Pten gene expression and alterations in 23 radiation-induced thymic lymphomas from B6C3F1 mice.
- Sequencing of deletion breakpoints to identify rearrangement mechanisms.
- Assessment of Pten protein expression and downstream Akt phosphorylation.
Main Results:
- No evidence of methylation-associated Pten silencing was found.
- Structural abnormalities, including mutations, insertions, and deletions, were identified in 35% of lymphomas.
- Aberrant V(D)J recombination and microhomology-mediated rearrangement were implicated in deletions.
- Biallelic Pten alterations were observed in 7 of 8 affected lymphomas, with 4 showing no Pten protein expression.
- Pten alterations correlated with downstream Akt phosphorylation.
Conclusions:
- Pten inactivation in radiation-induced thymic lymphomas is predominantly caused by biallelic structural abnormalities, not epigenetic silencing.
- These Pten aberrations play a significant role in radiation-induced lymphomagenesis.
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