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Mutational processes shape the landscape of TP53 mutations in human cancer.
Giacomelli, Andrew O; Yang, Xiaoping; Lintner, Robert E; McFarland, James M; Duby, Marc; Kim, Jaegil; Howard, Thomas P; Takeda, David Y; Ly, Seav Huong; Kim, Eejung; Gannon, Hugh S; Hurhula, Brian; Sharpe, Ted; Goodale, Amy; Fritchman, Briana; Steelman, Scott; Vazquez, Francisca; Tsherniak, Aviad; Aguirre, Andrew J; Doench, John G; Piccioni, Federica; Roberts, Charles W M; Meyerson, Matthew; Getz, Gad; Johannessen, Cory M; Root, David E; Hahn, William C.
Afiliação
  • Giacomelli AO; Dana-Farber Cancer Institute, Boston, MA, USA.
  • Yang X; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Lintner RE; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • McFarland JM; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Duby M; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Kim J; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Howard TP; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Takeda DY; Dana-Farber Cancer Institute, Boston, MA, USA.
  • Ly SH; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Kim E; Harvard Medical School, Boston, MA, USA.
  • Gannon HS; Dana-Farber Cancer Institute, Boston, MA, USA.
  • Hurhula B; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Sharpe T; Harvard Medical School, Boston, MA, USA.
  • Goodale A; Dana-Farber Cancer Institute, Boston, MA, USA.
  • Fritchman B; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Steelman S; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Vazquez F; Dana-Farber Cancer Institute, Boston, MA, USA.
  • Tsherniak A; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Aguirre AJ; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Doench JG; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Piccioni F; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Roberts CWM; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Meyerson M; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Getz G; Dana-Farber Cancer Institute, Boston, MA, USA.
  • Johannessen CM; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Root DE; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Hahn WC; Dana-Farber Cancer Institute, Boston, MA, USA.
Nat Genet ; 50(10): 1381-1387, 2018 10.
Article em En | MEDLINE | ID: mdl-30224644
ABSTRACT
Unlike most tumor suppressor genes, the most common genetic alterations in tumor protein p53 (TP53) are missense mutations1,2. Mutant p53 protein is often abundantly expressed in cancers and specific allelic variants exhibit dominant-negative or gain-of-function activities in experimental models3-8. To gain a systematic view of p53 function, we interrogated loss-of-function screens conducted in hundreds of human cancer cell lines and performed TP53 saturation mutagenesis screens in an isogenic pair of TP53 wild-type and null cell lines. We found that loss or dominant-negative inhibition of wild-type p53 function reliably enhanced cellular fitness. By integrating these data with the Catalog of Somatic Mutations in Cancer (COSMIC) mutational signatures database9,10, we developed a statistical model that describes the TP53 mutational spectrum as a function of the baseline probability of acquiring each mutation and the fitness advantage conferred by attenuation of p53 activity. Collectively, these observations show that widely-acting and tissue-specific mutational processes combine with phenotypic selection to dictate the frequencies of recurrent TP53 mutations.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Mutagênese / Proteína Supressora de Tumor p53 / Mutação / Neoplasias Limite: Humans Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Mutagênese / Proteína Supressora de Tumor p53 / Mutação / Neoplasias Limite: Humans Idioma: En Ano de publicação: 2018 Tipo de documento: Article