Uncovering the signaling networks of disseminated glioblastoma cells in vivo with INSIGHT
Abstract
Abstract Dysregulation of intracellular signaling networks underpins cancer. Yet, resolving signaling networks within distinct or rare cell types in cancer in vivo has been unattainable. Here we develop INSIGHT by integrating cell sorting with mass spectrometry to enable quantitative phosphoproteomics and proteomics of discrete cell types from fixed tissues. Using INSIGHT, we map the signaling network within disseminating glioblastoma cells from patient-derived xenografts implanted in mice. Disseminating tumor cells undergo a proteome-wide shift from proliferative to mesenchymal, neural progenitor-like cell states. In parallel, signaling network and global kinase activity are rewired, transitioning from cell cycle-associated circuitries to those governing synaptic function, neuronal migration, and ion channel activity. Changes begin at the tumor margin and persist in distant brain parenchyma. Hornerin and phosphorylation of Ca²⁺-permeable GluA2 at Y876 were identified as mediators of glioblastoma progression. INSIGHT enables systems-level dissection of cell-type-specific signaling circuitries in vivo across wide range of biological systems.
Article Details
Authors (26)
Ryuhjin Ahn
Alicia D. D’Souza
Lawrence Long
Yufei Cui
Jennifer Gantchev
Gerard Baquer
Danielle Burgenske
Katrina K. Bakken
Lauren L. Ott
Brett L. Carlson
Grace Zhou
Ishwar N. Kohale
Charles A. Whittaker
Heidi Temple
Tomer M. Yaron-Barir
Meyer Cancer Center, Weill Cornell Medicine
Jeffrey Wyckoff
Terry C. Burns
Rachael A. Vaubel
Cameron T. Flower
Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology
Wei Huang
Ann Tuma
Jared L. Johnson
Meyer Cancer Center, Weill Cornell Medicine
Nathalie Y. R. Agar
Josie Ursini-Siegel
Sarkaria Jann
Forest M. White