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Recombinase-based conditional and reversible gene regulation via XTR alleles.
Robles-Oteiza, Camila; Taylor, Sarah; Yates, Travis; Cicchini, Michelle; Lauderback, Brian; Cashman, Christopher R; Burds, Aurora A; Winslow, Monte M; Jacks, Tyler; Feldser, David M.
Afiliação
  • Robles-Oteiza C; Department of Cancer Biology, Abramson Family Cancer Research Institute and Perelman School of Medicine at the University of Pennsylvania, 421 Curie Boulevard, 751 Biomedical Research Building II/III, Philadelphia, Pennsylvania 19004, USA.
  • Taylor S; Koch Institute for Integrative Cancer Research at the Massachusetts Institute of Technology, Cambridge, Massachusetts 02144, USA.
  • Yates T; Department of Cancer Biology, Abramson Family Cancer Research Institute and Perelman School of Medicine at the University of Pennsylvania, 421 Curie Boulevard, 751 Biomedical Research Building II/III, Philadelphia, Pennsylvania 19004, USA.
  • Cicchini M; Department of Cancer Biology, Abramson Family Cancer Research Institute and Perelman School of Medicine at the University of Pennsylvania, 421 Curie Boulevard, 751 Biomedical Research Building II/III, Philadelphia, Pennsylvania 19004, USA.
  • Lauderback B; Department of Cancer Biology, Abramson Family Cancer Research Institute and Perelman School of Medicine at the University of Pennsylvania, 421 Curie Boulevard, 751 Biomedical Research Building II/III, Philadelphia, Pennsylvania 19004, USA.
  • Cashman CR; Koch Institute for Integrative Cancer Research at the Massachusetts Institute of Technology, Cambridge, Massachusetts 02144, USA.
  • Burds AA; Koch Institute for Integrative Cancer Research at the Massachusetts Institute of Technology, Cambridge, Massachusetts 02144, USA.
  • Winslow MM; Department of Genetics, Department of Pathology, Stanford University School of Medicine, Stanford, California 94305, USA.
  • Jacks T; Koch Institute for Integrative Cancer Research at the Massachusetts Institute of Technology, Cambridge, Massachusetts 02144, USA.
  • Feldser DM; The Howard Hughes Medical Institute, Chevy Chase, Maryland 20815, USA.
Nat Commun ; 6: 8783, 2015 Nov 05.
Article em En | MEDLINE | ID: mdl-26537451
Synthetic biological tools that enable precise regulation of gene function within in vivo systems have enormous potential to discern gene function in diverse physiological settings. Here we report the development and characterization of a synthetic gene switch that, when targeted in the mouse germline, enables conditional inactivation, reports gene expression and allows inducible restoration of the targeted gene. Gene inactivation and reporter expression is achieved through Cre-mediated stable inversion of an integrated gene-trap reporter, whereas inducible gene restoration is afforded by Flp-dependent deletion of the inverted gene trap. We validate our approach by targeting the p53 and Rb genes and establishing cell line and in vivo cancer model systems, to study the impact of p53 or Rb inactivation and restoration. We term this allele system XTR, to denote each of the allelic states and the associated expression patterns of the targeted gene: eXpressed (XTR), Trapped (TR) and Restored (R).
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Regulação Neoplásica da Expressão Gênica / Genes p53 / Genes do Retinoblastoma / Integrases / Inativação Gênica / Genes Sintéticos / Neoplasias Experimentais Idioma: En Ano de publicação: 2015 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Regulação Neoplásica da Expressão Gênica / Genes p53 / Genes do Retinoblastoma / Integrases / Inativação Gênica / Genes Sintéticos / Neoplasias Experimentais Idioma: En Ano de publicação: 2015 Tipo de documento: Article