Filamin-A is required to mediate SST2 effects in pancreatic neuroendocrine tumours

Eleonora Vitali1, Valeria Cambiaghi1, Alessandro Zerbi1

  • 1Laboratory of Cellular and Molecular EndocrinologyIRCCS Clinical and Research Institute Humanitas, Via Manzoni 56, 20089 Rozzano, Milan, ItalyPancreas Surgery UnitIRCCS Humanitas Research Hospital, Via Manzoni 56, 20089 Rozzano, Milan, ItalyMedical Oncology and Hematology UnitCancer Center, IRCCS Humanitas Research Hospital, Via Manzoni 56, 20089 Rozzano, Milan, ItalyPathology UnitIRCCS Humanitas Research Hospital, Via Manzoni 56, 20089 Rozzano, Milan, ItalyFondazione IRCCS Ospedale Maggiore PoliclinicoEndocrinology and Diabetology Unit, Department of Clinical Sciences and Community Health, University of Milan, Via F Sforza 35, 20100 Milan, ItalyDepartment of Biomedical SciencesHumanitas University, Rozzano, Milan, ItalyEndocrinology UnitHumanitas Research Hospital, Via Manzoni 56, 20089 Rozzano, Milan, Italy.

Endocrine-Related Cancer
|January 7, 2016
PubMed

Insights

Filamin A (FLNA) is crucial for somatostatin receptor type 2 (SST2) signaling in pancreatic neuroendocrine tumors (P-NETs). FLNA silencing affects SST2 expression and downstream effects, impacting treatment response in P-NET patients.

Area of Science:

  • Oncology
  • Cell Biology
  • Biochemistry

Background:

  • Somatostatin receptor type 2 (SST2) is a key target for pancreatic neuroendocrine tumor (P-NET) therapies.
  • Treatment resistance in a subset of P-NET patients necessitates understanding underlying mechanisms.
  • Filamin A (FLNA) is implicated in G protein-coupled receptor (GPCR) regulation.

Purpose of the Study:

  • To investigate the role of the cytoskeleton protein Filamin A (FLNA) in SST2 expression and signaling.
  • To determine FLNA's influence on angiogenesis, cell adhesion, and cell migration in P-NETs.
  • To explore FLNA's potential role in P-NET treatment response variability.

Main Methods:

  • Silencing of FLNA in human P-NET cells and the QGP1 cell line.
  • Long-term activation of SST2 using BIM23120.
  • Assessment of SST2, cyclin D1, P-ERK1/2, cAMP, and VEGF levels.
  • Evaluation of in vitro angiogenesis, cell adhesion, and cell migration.

Main Results:

  • FLNA silencing did not affect basal SST2 expression but significantly reduced it after SST2 activation.
  • FLNA silencing abolished the inhibitory effects of BIM23120 on downstream signaling pathways (cyclin D1, P-ERK1/2, cAMP, VEGF).
  • FLNA silencing abrogated BIM23120-induced promotion of cell adhesion and inhibition of cell migration.

Conclusions:

  • FLNA plays a critical role in regulating SST2 expression and signaling in P-NETs.
  • FLNA is essential for SST2-mediated effects on angiogenesis, cell adhesion, and cell migration.
  • FLNA may be a key factor determining patient responsiveness to somatostatin analogues in P-NETs.