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Fine-tuning and autoregulation of the intestinal determinant and tumor suppressor homeobox gene CDX2 by alternative splicing.
Balbinot, Camille; Vanier, Marie; Armant, Olivier; Nair, Asmaa; Penichon, Julien; Soret, Christine; Martin, Elisabeth; Saandi, Thoueiba; Reimund, Jean-Marie; Deschamps, Jacqueline; Beck, Felix; Domon-Dell, Claire; Gross, Isabelle; Duluc, Isabelle; Freund, Jean-Noël.
Afiliación
  • Balbinot C; Université de Strasbourg, Inserm, UMR_S1113, FMTS, Strasbourg 67000, France.
  • Vanier M; Université de Strasbourg, Inserm, UMR_S1113, FMTS, Strasbourg 67000, France.
  • Armant O; Karlsruhe Institute of Technology, Institute of Toxicology and Genetics, Postfach 3640, Karlsruhe 76021, Germany.
  • Nair A; Université de Strasbourg, Inserm, UMR_S1113, FMTS, Strasbourg 67000, France.
  • Penichon J; Université de Strasbourg, Inserm, UMR_S1113, FMTS, Strasbourg 67000, France.
  • Soret C; Université de Strasbourg, Inserm, UMR_S1113, FMTS, Strasbourg 67000, France.
  • Martin E; Université de Strasbourg, Inserm, UMR_S1113, FMTS, Strasbourg 67000, France.
  • Saandi T; Université de Strasbourg, Inserm, UMR_S1113, FMTS, Strasbourg 67000, France.
  • Reimund JM; Université de Strasbourg, Inserm, UMR_S1113, FMTS, Strasbourg 67000, France.
  • Deschamps J; Hubrecht Institute, Developmental Biology and Stem Cell Research, Uppsalalaan 8, Utrecht 3584 CT, The Netherlands.
  • Beck F; Barts and The London School of Medicine and Dentistry, London E1 2ES, UK.
  • Domon-Dell C; Université de Strasbourg, Inserm, UMR_S1113, FMTS, Strasbourg 67000, France.
  • Gross I; Université de Strasbourg, Inserm, UMR_S1113, FMTS, Strasbourg 67000, France.
  • Duluc I; Université de Strasbourg, Inserm, UMR_S1113, FMTS, Strasbourg 67000, France.
  • Freund JN; Université de Strasbourg, Inserm, UMR_S1113, FMTS, Strasbourg 67000, France.
Cell Death Differ ; 24(12): 2173-2186, 2017 12.
Article en En | MEDLINE | ID: mdl-28862703
ABSTRACT
On the basis of phylogenetic analyses, we uncovered a variant of the CDX2 homeobox gene, a major regulator of the development and homeostasis of the gut epithelium, also involved in cancer. This variant, miniCDX2, is generated by alternative splicing coupled to alternative translation initiation, and contains the DNA-binding homeodomain but is devoid of transactivation domain. It is predominantly expressed in crypt cells, whereas the CDX2 protein is present in crypt cells but also in differentiated villous cells. Functional studies revealed a dominant-negative effect exerted by miniCDX2 on the transcriptional activity of CDX2, and conversely similar effects regarding several transcription-independent functions of CDX2. In addition, a regulatory role played by the CDX2 and miniCDX2 homeoproteins on their pre-mRNA splicing is displayed, through interactions with splicing factors. Overexpression of miniCDX2 in the duodenal Brunner glands leads to the expansion of the territory of these glands and ultimately to brunneroma. As a whole, this study characterized a new and original variant of the CDX2 homeobox gene. The production of this variant represents not only a novel level of regulation of this gene, but also a novel way to fine-tune its biological activity through the versatile functions exerted by the truncated variant compared to the full-length homeoprotein. This study highlights the relevance of generating protein diversity through alternative splicing in the gut and its diseases.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Ciego / Factor de Transcripción CDX2 / Mucosa Intestinal Límite: Animals / Humans Idioma: En Revista: Cell Death Differ Año: 2017 Tipo del documento: Article País de afiliación: Francia

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Ciego / Factor de Transcripción CDX2 / Mucosa Intestinal Límite: Animals / Humans Idioma: En Revista: Cell Death Differ Año: 2017 Tipo del documento: Article País de afiliación: Francia
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