A novel program of infiltrative control in astrocytomas: ADAM23 depletion promotes cell invasion by activating γ-secretase complex

Author:

Jandrey Elisa Helena Farias1,Barnabé Gabriela Filoso1,Maldaun Marcos1,Asprino Paula Fontes1,dos Santos Natália Cristina1,Inoue Lilian Tiemi1,Rozanski Andrei1,Galante Pedro Alexandre Favoretto1ORCID,Marie Suely Kazue Nagahashi2,Oba-Shinjo Sueli Mieko2,dos Santos Tiago Góss3,Chammas Roger4ORCID,Lancellotti Carmen Lucia Penteado5,Furnari Frank B6,Camargo Anamaria Aranha1,Costa Érico Tosoni1ORCID

Affiliation:

1. Molecular Oncology Center, Hospital Sírio-Libanês , São Paulo , Brazil

2. Department of Neurology, Laboratory of Molecular and Cellular Biology, LIM15, FMUSP , São Paulo , Brazil

3. Centro Internacional de Pesquisa, A.C. Camargo Cancer Center, Fundação Antônio Prudente , São Paulo , Brazil

4. Laboratório de Oncologia Experimental, Centro de Investigação Translacional em Oncologia, Instituto do Câncer do Estado de São Paulo , São Paulo , Brazil

5. Departamento de Patologia , Santa Casa de São Paulo , Brazil

6. Ludwig Institute for Cancer Research (LICR), University of California , San Diego, California , USA

Abstract

Abstract Background Infiltration is a life-threatening growth pattern in malignant astrocytomas and a significant cause of therapy resistance. It results in the tumor cell spreading deeply into the surrounding brain tissue, fostering tumor recurrence and making complete surgical resection impossible. We need to thoroughly understand the mechanisms underlying diffuse infiltration to develop effective therapies. Methods We integrated in vitro and in vivo functional assays, RNA sequencing, clinical, and expression information from public data sets to investigate the role of ADAM23 expression coupling astrocytoma’s growth and motility. Results ADAM23 downregulation resulted in increased infiltration, reduced tumor growth, and improved overall survival in astrocytomas. Additionally, we show that ADAM23 deficiency induces γ-secretase (GS) complex activity, contributing to the production and deposition of the Amyloid-β and release of NICD. Finally, GS ablation in ADAM23-low astrocytomas induced a significant inhibitory effect on the invasive programs. Conclusions Our findings reveal a role for ADAM23 in regulating the balance between cell proliferation and invasiveness in astrocytoma cells, proposing GS inhibition as a therapeutic option in ADAM23 low-expressing astrocytomas.

Funder

FAPESP

Hospital Sírio-Libanês

LICR

Publisher

Oxford University Press (OUP)

Subject

Surgery,Oncology,Neurology (clinical)

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