Pharmacologically controlling protein-protein interactions through epichaperomes for therapeutic vulnerability in cancer

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作者
Suhasini Joshi
Erica DaGama Gomes
Tai Wang
Adriana Corben
Tony Taldone
Srinivasa Gandu
Chao Xu
Sahil Sharma
Salma Buddaseth
Pengrong Yan
Lon Yin L. Chan
Askan Gokce
Vinagolu K. Rajasekhar
Lisa Shrestha
Palak Panchal
Justina Almodovar
Chander S. Digwal
Anna Rodina
Swathi Merugu
NagaVaraKishore Pillarsetty
Vlad Miclea
Radu I. Peter
Wanyan Wang
Stephen D. Ginsberg
Laura Tang
Marissa Mattar
Elisa de Stanchina
Kenneth H. Yu
Maeve Lowery
Olivera Grbovic-Huezo
Eileen M. O’Reilly
Yelena Janjigian
John H. Healey
William R. Jarnagin
Peter J. Allen
Chris Sander
Hediye Erdjument-Bromage
Thomas A. Neubert
Steven D. Leach
Gabriela Chiosis
机构
[1] Chemical Biology Program,Department of Pathology
[2] Memorial Sloan Kettering Cancer Center,Department of Surgery
[3] Memorial Sloan Kettering Cancer Center,Department of Radiology
[4] Memorial Sloan Kettering Cancer Center,Faculty of Automation and Computer Science
[5] Memorial Sloan Kettering Cancer Center,Departments of Psychiatry, Neuroscience & Physiology, and the NYU Neuroscience Institute
[6] Technical University of Cluj-Napoca,Department of Medicine
[7] Center for Dementia Research,Department of Surgery
[8] Nathan Kline Institute,Department of Cell Biology
[9] New York University Grossman School of Medicine,Department of Cell Biology
[10] Antitumour Assessment Core Facility,undefined
[11] Memorial Sloan Kettering Cancer Center,undefined
[12] Molecular Pharmacology Program,undefined
[13] Memorial Sloan Kettering Cancer Center,undefined
[14] David M. Rubenstein Center for Pancreatic Cancer Research,undefined
[15] Memorial Sloan Kettering Cancer Center,undefined
[16] Memorial Sloan Kettering Cancer Center and Weill Cornell Medical College,undefined
[17] Duke University School of Medicine,undefined
[18] Department of Data Science,undefined
[19] Dana-Farber Cancer Institute,undefined
[20] Harvard Medical School,undefined
[21] New York University Grossman School of Medicine,undefined
[22] Kimmel Center for Biology and Medicine at the Skirball Institute,undefined
[23] NYU School of Medicine,undefined
[24] Dartmouth Geisel School of Medicine and Norris Cotton Cancer Center,undefined
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Cancer cell plasticity due to the dynamic architecture of interactome networks provides a vexing outlet for therapy evasion. Here, through chemical biology approaches for systems level exploration of protein connectivity changes applied to pancreatic cancer cell lines, patient biospecimens, and cell- and patient-derived xenografts in mice, we demonstrate interactomes can be re-engineered for vulnerability. By manipulating epichaperomes pharmacologically, we control and anticipate how thousands of proteins interact in real-time within tumours. Further, we can essentially force tumours into interactome hyperconnectivity and maximal protein-protein interaction capacity, a state whereby no rebound pathways can be deployed and where alternative signalling is supressed. This approach therefore primes interactomes to enhance vulnerability and improve treatment efficacy, enabling therapeutics with traditionally poor performance to become highly efficacious. These findings provide proof-of-principle for a paradigm to overcome drug resistance through pharmacologic manipulation of proteome-wide protein-protein interaction networks.
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