Literature DB >> 27375018

A large-scale RNAi screen identifies LCMR1 as a critical regulator of Tspan8-mediated melanoma invasion.

G Agaësse1,2,3, L Barbollat-Boutrand1,2,3, E Sulpice4,5,6, R Bhajun4,5,6, M El Kharbili1,2,3, O Berthier-Vergnes1,2,3, F Degoul7,8, A de la Fouchardière9, E Berger10, T Voeltzel11, J Lamartine1,2,3, X Gidrol4,5,6, I Masse1,2,3.   

Abstract

Melanoma is the deadliest form of skin cancer owing to its proclivity to metastasise, and recently developed therapies have not yielded the expected results, because almost all patients relapse. Therefore, understanding the molecular mechanisms that underlie early invasion by melanoma cells is crucial to improving patient survival. We have previously shown that, whereas the Tetraspanin 8 protein (Tspan8) is undetectable in normal skin and benign lesions, its expression arises with the progression of melanoma and is sufficient to increase cell invasiveness. Therefore, to identify Tspan8 transcriptional regulators that could explain the onset of Tspan8 expression, thereby conferring an invasive phenotype, we performed an innovative RNA interference-based screen, which, for the first time, identified several Tspan8 repressors and activators, such as GSK3β, PTEN, IQGAP1, TPT1 and LCMR1. LCMR1 is a recently identified protein that is overexpressed in numerous carcinomas; its expression and role, however, had not previously been studied in melanoma. The present study identified Tspan8 as the first LCMR1 target that could explain its function in carcinogenesis. LCMR1 modulation was sufficient to positively regulate endogenous Tspan8 expression, with concomitant in vitro phenotypic changes such as loss of melanoma cell-matrix adherence and increase in invasion, and Tspan8 expression promoted tumourigenicity in vivo. Moreover, LCMR1 and Tspan8 overexpression were shown to correlate in melanoma lesions, and both proteins could be downregulated in vitro by vemurafenib. In conclusion, this study highlights the importance of Tspan8 and its regulators in the control of early melanoma invasion and suggests that they may be promising new therapeutic targets downstream of the RAF-MEK-ERK signalling pathway.

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Year:  2016        PMID: 27375018     DOI: 10.1038/onc.2016.219

Source DB:  PubMed          Journal:  Oncogene        ISSN: 0950-9232            Impact factor:   9.867


  56 in total

1.  MED19 promotes proliferation and tumorigenesis of lung cancer.

Authors:  Mei Sun; Rui Jiang; Jin-Dong Li; Shu-Li Luo; Hong-Wen Gao; Cheng-Yan Jin; Dong-Lei Shi; Chun-Guang Wang; Bin Wang; Xing-Yi Zhang
Journal:  Mol Cell Biochem       Date:  2011-04-26       Impact factor: 3.396

2.  Knockdown of MED19 by short hairpin RNA-mediated gene silencing inhibits pancreatic cancer cell proliferation.

Authors:  Xing-Hua Li; De-Ning Fang; Chai-Ming Zeng
Journal:  Cancer Biother Radiopharm       Date:  2011-08       Impact factor: 3.099

3.  Architecture of the RNA polymerase II-Mediator core initiation complex.

Authors:  C Plaschka; L Larivière; L Wenzeck; M Seizl; M Hemann; D Tegunov; E V Petrotchenko; C H Borchers; W Baumeister; F Herzog; E Villa; P Cramer
Journal:  Nature       Date:  2015-02-04       Impact factor: 49.962

4.  Suppression of lung cancer metastasis-related protein 1 (LCMR1) inhibits the growth of colorectal cancer cells.

Authors:  E Ji-Fu; Jun-Jie Xing; Li-Qiang Hao; Chuan-Gang Fu
Journal:  Mol Biol Rep       Date:  2011-07-06       Impact factor: 2.316

5.  TSPAN1 functions as an oncogene in gastric cancer and is downregulated by miR-573.

Authors:  Zhengmao Lu; Tianhang Luo; Mingming Nie; Tao Pang; Xin Zhang; Xiaojun Shen; Liye Ma; Jianwei Bi; Guo Wei; Guoen Fang; Xuchao Xue
Journal:  FEBS Lett       Date:  2015-06-06       Impact factor: 4.124

6.  GSK-3 promotes cell survival, growth, and PAX3 levels in human melanoma cells.

Authors:  Jennifer D Kubic; Joseph B Mascarenhas; Takumi Iizuka; Don Wolfgeher; Deborah Lang
Journal:  Mol Cancer Res       Date:  2012-06-07       Impact factor: 5.852

7.  Discovery of a selective inhibitor of oncogenic B-Raf kinase with potent antimelanoma activity.

Authors:  James Tsai; John T Lee; Weiru Wang; Jiazhong Zhang; Hanna Cho; Shumeye Mamo; Ryan Bremer; Sam Gillette; Jun Kong; Nikolas K Haass; Katrin Sproesser; Ling Li; Keiran S M Smalley; Daniel Fong; Yong-Liang Zhu; Adhirai Marimuthu; Hoa Nguyen; Billy Lam; Jennifer Liu; Ivana Cheung; Julie Rice; Yoshihisa Suzuki; Catherine Luu; Calvin Settachatgul; Rafe Shellooe; John Cantwell; Sung-Hou Kim; Joseph Schlessinger; Kam Y J Zhang; Brian L West; Ben Powell; Gaston Habets; Chao Zhang; Prabha N Ibrahim; Peter Hirth; Dean R Artis; Meenhard Herlyn; Gideon Bollag
Journal:  Proc Natl Acad Sci U S A       Date:  2008-02-19       Impact factor: 11.205

8.  Suppression of lung cancer metastasis-related protein 1 promotes apoptosis in lung cancer cells.

Authors:  Yang Xu; Chunsun Li; Qing Tian; Yanqin Li; Zhen Yang; Zhixin Liang; Liangan Chen
Journal:  Int J Mol Med       Date:  2012-10-16       Impact factor: 4.101

9.  Therapeutic targeting of tetraspanin8 in epithelial ovarian cancer invasion and metastasis.

Authors:  C S Park; T-K Kim; H G Kim; Y-J Kim; M H Jeoung; W R Lee; N K Go; K Heo; S Lee
Journal:  Oncogene       Date:  2016-01-25       Impact factor: 9.867

10.  Gene expression profiles of human melanoma cells with different invasive potential reveal TSPAN8 as a novel mediator of invasion.

Authors:  O Berthier-Vergnes; M El Kharbili; A de la Fouchardière; T Pointecouteau; P Verrando; A Wierinckx; J Lachuer; F Le Naour; J Lamartine
Journal:  Br J Cancer       Date:  2010-11-16       Impact factor: 7.640

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  10 in total

1.  Tspan8-β-catenin positive feedback loop promotes melanoma invasion.

Authors:  Manale El Kharbili; Gweltaz Agaësse; Laetitia Barbollat-Boutrand; Roxane M Pommier; Arnaud de la Fouchardière; Lionel Larue; Julie Caramel; Alain Puisieux; Odile Berthier-Vergnes; Ingrid Masse
Journal:  Oncogene       Date:  2019-01-24       Impact factor: 9.867

2.  ERRα coordinates actin and focal adhesion dynamics.

Authors:  Violaine Tribollet; Catherine Cerutti; Alain Géloën; Emmanuelle Berger; Richard De Mets; Martial Balland; Julien Courchet; Jean-Marc Vanacker; Christelle Forcet
Journal:  Cancer Gene Ther       Date:  2022-04-04       Impact factor: 5.854

3.  p53 targets TSPAN8 to prevent invasion in melanoma cells.

Authors:  G Agaësse; L Barbollat-Boutrand; M El Kharbili; O Berthier-Vergnes; I Masse
Journal:  Oncogenesis       Date:  2017-04-03       Impact factor: 7.485

4.  Tspan8 Drives Melanoma Dermal Invasion by Promoting ProMMP-9 Activation and Basement Membrane Proteolysis in a Keratinocyte-Dependent Manner.

Authors:  Manale El Kharbili; Muriel Cario; Nicolas Béchetoille; Catherine Pain; Claude Boucheix; Françoise Degoul; Ingrid Masse; Odile Berthier-Vergnes
Journal:  Cancers (Basel)       Date:  2020-05-21       Impact factor: 6.639

5.  Tspan8 is expressed in breast cancer and regulates E-cadherin/catenin signalling and metastasis accompanied by increased circulating extracellular vesicles.

Authors:  Maren Voglstaetter; Andreas R Thomsen; Jerome Nouvel; Arend Koch; Paul Jank; Elena Grueso Navarro; Tanja Gainey-Schleicher; Richa Khanduri; Andrea Groß; Florian Rossner; Carina Blaue; Clemens M Franz; Marina Veil; Gerhard Puetz; Andreas Hippe; Jochen Dindorf; Jubin Kashef; Wilko Thiele; Bernhard Homey; Celine Greco; Claude Boucheix; Andreas Baur; Thalia Erbes; Cornelius F Waller; Marie Follo; Ghamartaj Hossein; Christine Sers; Jonathan Sleeman; Irina Nazarenko
Journal:  J Pathol       Date:  2019-06-18       Impact factor: 7.996

Review 6.  TSPAN8 as a Novel Emerging Therapeutic Target in Cancer for Monoclonal Antibody Therapy.

Authors:  Kyun Heo; Sukmook Lee
Journal:  Biomolecules       Date:  2020-03-03

7.  MED19 alters AR occupancy and gene expression in prostate cancer cells, driving MAOA expression and growth under low androgen.

Authors:  Hannah Weber; Rachel Ruoff; Michael J Garabedian
Journal:  PLoS Genet       Date:  2021-01-29       Impact factor: 5.917

8.  AN1-type zinc finger protein 3 (ZFAND3) is a transcriptional regulator that drives Glioblastoma invasion.

Authors:  Anne Schuster; Eliane Klein; Virginie Neirinckx; Arnon Møldrup Knudsen; Carina Fabian; Ann-Christin Hau; Monika Dieterle; Anais Oudin; Petr V Nazarov; Anna Golebiewska; Arnaud Muller; Daniel Perez-Hernandez; Sophie Rodius; Gunnar Dittmar; Rolf Bjerkvig; Christel Herold-Mende; Barbara Klink; Bjarne Winther Kristensen; Simone P Niclou
Journal:  Nat Commun       Date:  2020-12-11       Impact factor: 14.919

9.  miR-543 regulates high glucose-induced fibrosis and autophagy in diabetic nephropathy by targeting TSPAN8.

Authors:  Langen Zhuang; Xiaoxu Ge; Xiaolei Hu; Qingqing Yang; Xiaoyan Pei; Guoxi Jin
Journal:  BMC Nephrol       Date:  2022-03-04       Impact factor: 2.388

10.  Tetraspanin8 expression predicts an increased metastatic risk and is associated with cancer-related death in human cutaneous melanoma.

Authors:  Laetitia Barbollat-Boutrand; Roxane M Pommier; Odile Berthier-Vergnes; Arnaud de la Fouchardière; Patrick Combemale; Maxime Grimont; Noémie Lopez-Ramirez; Julie Caramel; Stéphane Dalle; Jean-Luc Perrot; Caroline Gaudy-Marqueste; Nicolas Macagno; Sandrine Mansard; Fanny Bouquet; Ingrid Masse
Journal:  Mol Cancer       Date:  2021-10-02       Impact factor: 27.401

  10 in total

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