Your browser doesn't support javascript.
loading
Notch3 contributes to T-cell leukemia growth via regulation of the unfolded protein response.
Giuli, Maria Valeria; Diluvio, Giulia; Giuliani, Eugenia; Franciosa, Giulia; Di Magno, Laura; Pignataro, Maria Gemma; Tottone, Luca; Nicoletti, Carmine; Besharat, Zein Mersini; Peruzzi, Giovanna; Pelullo, Maria; Palermo, Rocco; Canettieri, Gianluca; Talora, Claudio; d'Amati, Giulia; Bellavia, Diana; Screpanti, Isabella; Checquolo, Saula.
Afiliação
  • Giuli MV; Laboratory of Molecular Pathology, Department of Molecular Medicine, Sapienza University, Rome, Italy.
  • Diluvio G; Sylvester Comprehensive Cancer Center, Miller School of Medicine, University of Miami, Miami, FL, USA.
  • Giuliani E; Laboratory of Molecular Pathology, Department of Molecular Medicine, Sapienza University, Rome, Italy.
  • Franciosa G; Center for Life Nano Science@Sapienza, Istituto Italiano di Tecnologia, Rome, Italy.
  • Di Magno L; Novo Nordisk Foundation Center for Protein Research, University of Copenaghen, Copenaghen, Denmark.
  • Pignataro MG; Center for Life Nano Science@Sapienza, Istituto Italiano di Tecnologia, Rome, Italy.
  • Tottone L; Department of Radiological, Oncological and Pathological Sciences, Sapienza University, Rome, Italy.
  • Nicoletti C; Rutgers Cancer Institute of New Jersey, Rutgers University, New Brunswick, NJ, USA.
  • Besharat ZM; Unit of Histology and Medical Embryology, Department of Anatomy, Histology, Forensic Medicine and Orthopaedics, Sapienza University, Rome, Italy.
  • Peruzzi G; Laboratory of Molecular Pathology, Department of Molecular Medicine, Sapienza University, Rome, Italy.
  • Pelullo M; Center for Life Nano Science@Sapienza, Istituto Italiano di Tecnologia, Rome, Italy.
  • Palermo R; Center for Life Nano Science@Sapienza, Istituto Italiano di Tecnologia, Rome, Italy.
  • Canettieri G; Laboratory of Molecular Pathology, Department of Molecular Medicine, Sapienza University, Rome, Italy.
  • Talora C; Laboratory of Molecular Pathology, Department of Molecular Medicine, Sapienza University, Rome, Italy.
  • d'Amati G; Laboratory of Molecular Pathology, Department of Molecular Medicine, Sapienza University, Rome, Italy.
  • Bellavia D; Department of Radiological, Oncological and Pathological Sciences, Sapienza University, Rome, Italy.
  • Screpanti I; Laboratory of Molecular Pathology, Department of Molecular Medicine, Sapienza University, Rome, Italy. diana.bellavia@uniroma1.it.
  • Checquolo S; Laboratory of Molecular Pathology, Department of Molecular Medicine, Sapienza University, Rome, Italy. isabella.screpanti@uniroma1.it.
Oncogenesis ; 9(10): 93, 2020 Oct 18.
Article em En | MEDLINE | ID: mdl-33071287
ABSTRACT
Unfolded protein response (UPR) is a conserved adaptive response that tries to restore protein homeostasis after endoplasmic reticulum (ER) stress. Recent studies highlighted the role of UPR in acute leukemias and UPR targeting has been suggested as a therapeutic approach. Aberrant Notch signaling is a common feature of T-cell acute lymphoblastic leukemia (T-ALL), as downregulation of Notch activity negatively affects T-ALL cell survival, leading to the employment of Notch inhibitors in T-ALL therapy. Here we demonstrate that Notch3 is able to sustain UPR in T-ALL cells, as Notch3 silencing favored a Bip-dependent IRE1α inactivation under ER stress conditions, leading to increased apoptosis via upregulation of the ER stress cell death mediator CHOP. By using Juglone, a naturally occurring naphthoquinone acting as an anticancer agent, to decrease Notch3 expression and induce ER stress, we observed an increased ER stress-associated apoptosis. Altogether our results suggest that Notch3 inhibition may prevent leukemia cells from engaging a functional UPR needed to compensate the Juglone-mediated ER proteotoxic stress. Notably, in vivo administration of Juglone to human T-ALL xenotransplant models significantly reduced tumor growth, finally fostering the exploitation of Juglone-dependent Notch3 inhibition to perturb the ER stress/UPR signaling in Notch3-dependent T-ALL subsets.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: Oncogenesis Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Itália

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: Oncogenesis Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Itália