Nerve Growth Factor and proNGF Simultaneously Promote Symmetric Self-Renewal, Quiescence, and Epithelial to Mesenchymal Transition to Enlarge the Breast Cancer Stem Cell Compartment

Author:

Tomellini Elisa123,Touil Yasmine34,Lagadec Chann12,Julien Sylvain25,Ostyn Pauline3,Ziental-Gelus Nathalie12,Meignan Samuel16,Lengrand Justine12,Adriaenssens Eric27,Polakowska Renata3,Le Bourhis Xuefen12

Affiliation:

1. Inserm U908, Villeneuve d'Ascq, France

2. Université Lille 1, Villeneuve d'Ascq, France

3. Inserm U837 Jean-Pierre Aubert Research Center, Institut pour la Recherche sur le Cancer de Lille (IRCL), Lille, France

4. SIRIC ONCOLille, Lille, France

5. CNRS UMR 8576, Villeneuve d'Ascq, France

6. Unité de Pharmacology antitumorale, Centre Oscar Lambret, Lille, France

7. CNRS UMR 8161, Institut de Biologie de Lille, Lille, France

Abstract

Abstract The discovery of cancer stem cells (CSCs) fundamentally advanced our understanding of the mechanisms governing breast cancer development. However, the stimuli that control breast CSC self-renewal and differentiation have still not been fully detailed. We previously showed that nerve growth factor (NGF) and its precursor proNGF can stimulate breast cancer cell growth and invasion in an autocrine manner. In this study, we investigated the effects of NGF and proNGF on the breast CSC compartment and found that NGF or proNGF enrich for CSCs in several breast cancer cell lines. This enrichment appeared to be achieved by increasing the number of symmetric divisions of quiescent/slow-proliferating CSCs. Interestingly, in vitro NGF pretreatment of MCF-7 luminal breast cancer cells promoted epithelial to mesenchymal transition in tumors of severe combined immunodeficient mice. Furthermore, p75NTR, the common receptor for both neurotrophins and proneurotrophins, mediated breast CSC self-renewal by regulating the expression of pluripotency transcription factors. Our data indicate, for the first time, that the NGF/proNGF/p75NTR axis plays a critical role in regulating breast CSC self-renewal and plasticity. Stem Cells  2015;33:342–353

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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