Research
Epitranscriptomics & Cancer Adaptation : A.David

Activities

Our research work focuses on the contribution of post-transcriptional mechanisms on cancer cell adaptation, in particular RNA epigenetic & translational control.

More..

Zotero public

Added by amaraver
Last modified by standudu
Group name EquipeAM
Item Type Journal Article
Title SILAC identifies LAD1 as a filamin-binding regulator of actin dynamics in response to EGF and a marker of aggressive breast tumors
Creator Roth et al.
Author Lee Roth
Author Swati Srivastava
Author Moshit Lindzen
Author Aldema Sas-Chen
Author Michal Sheffer
Author Mattia Lauriola
Author Yehoshua Enuka
Author Ashish Noronha
Author Maicol Mancini
Author Sara Lavi
Author Gabi Tarcic
Author Gur Pines
Author Nava Nevo
Author Ori Heyman
Author Tamar Ziv
Author Oscar M. Rueda
Author Davide Gnocchi
Author Eli Pikarsky
Author Arie Admon
Author Carlos Caldas
Author Yosef Yarden
Abstract Mutations mimicking growth factor-induced proliferation and motility characterize aggressive subtypes of mammary tumors. To unravel currently unknown players in these processes, we performed phosphoproteomic analysis on untransformed mammary epithelial cells (MCF10A) that were stimulated in culture with epidermal growth factor (EGF). We identified ladinin-1 (LAD1), a largely uncharacterized protein to date, as a phosphorylation-regulated mediator of the EGF-to-ERK pathway. Further experiments revealed that LAD1 mediated the proliferation and migration of mammary cells. LAD1 was transcriptionally induced, phosphorylated, and partly colocalized with actin stress fibers in response to EGF. Yeast two-hybrid, proximity ligation, and coimmunoprecipitation assays revealed that LAD1 bound to actin-cross-linking proteins called filamins. Cosedimentation analyses indicated that LAD1 played a role in actin dynamics, probably in collaboration with the scaffold protein 14-3-3? (also called SFN). Depletion of LAD1 decreased the expression of transcripts associated with cell survival and inhibited the growth of mammary xenografts in an animal model. Furthermore, LAD1 predicts poor patient prognosis and is highly expressed in aggressive subtypes of breast cancer characterized as integrative clusters 5 and 10, which partly correspond to triple-negative and HER2-positive tumors. Thus, these findings reveal a cytoskeletal component that is critically involved in cell migration and the acquisition of oncogenic attributes in human mammary tumors.
Publication Science Signaling
Volume 11
Issue 515
Date 01 30, 2018
Journal Abbr Sci Signal
Language eng
DOI 10.1126/scisignal.aan0949
ISSN 1937-9145
Library Catalog PubMed
Extra 00026 PMID: 29382783
Tags original
Date Added 2018/11/15 - 17:01:40
Date Modified 2022/02/28 - 18:46:05


© Institut de Recherche en Cancérologie de Montpellier - 2011 - Tous droits réservés - Mentions légales - Connexion - Conception : ID Alizés