info:eu-repo/semantics/article
AID overexpression leads to aggressive murine CLL and non-Ig mutations that mirror human neoplasms.
Fecha
2021-07Registro en:
Morande, Pablo Elías; Yan, Xiao Jie; Sepulveda Yanez, Julieta Haydee; Seija, Noé; Marquez, Maria Elena; et al.; AID overexpression leads to aggressive murine CLL and non-Ig mutations that mirror human neoplasms.; American Society of Hematology; Blood; 7-2021; 1-14
0006-4971
CONICET Digital
CONICET
Autor
Morande, Pablo Elías
Yan, Xiao Jie
Sepulveda Yanez, Julieta Haydee
Seija, Noé
Marquez, Maria Elena
Sotelo, Natalia Soledad
Abreu, Cecilia
Crispo, Martina
Fernández Graña, Gabriel
Rego, Natalia
Bois, Therence
Methot, Stephen Patrick
Palacios, Florencia
Remedi, Victoria
Rai, Kanti R.
Buschiazzo, Alejandro
Di Noia, Javier Marcelo
Navarrete, Marcelo Alejandro
Chiorazzi, Nicholas
Oppezzo, Pablo
Resumen
Most cancers become more dangerous by the outgrowth of malignant subclones with additional DNA mutations that favor proliferation or survival. Using chronic lymphocytic leukemia (CLL), a disease exemplary of this process, and a model for neoplasms in general, we created transgenic mice overexpressing the enzyme, activation-induced deaminase (AID), whose normal function is to induce DNA mutations in B lymphocytes. AID allows normal B lymphocytes to develop more effective immunoglobulin (Ig)-mediated immunity, but also is able to mutate non-Ig genes, predisposing to cancer. In chronic lymphocytic leukemia (CLL), AID expression correlates with poor prognosis suggesting a role for this enzyme in disease progression. Nevertheless, direct experimental evidence identifying the specific genes that are mutated by AID and indicating that those genes are associated with disease progression is not available. To address this point, we overexpressed Aicda in a murine model of CLL (Em-TCL1). Analyses of TCL1/AID mice demonstrate a role for AID in disease kinetics, CLL-cell proliferation, and the development of cancer-related target mutations with canonical AID signatures in non-Igs genes. Notably, our mouse models can accumulate mutations in the same genes that are mutated in human cancers. Moreover, some of these mutations occur at homologous positions, leading to identical or chemically-similar amino acid substitutions as in human CLL and lymphoma.Together, these findings support a direct link between aberrant AID activity and CLL driver mutations that are then selected for their oncogenic effects, whereby AID promotes aggressiveness in CLL and other B-cell neoplasms.