Oncolytic virotherapy induced CSDE1 neo-antigenesis restricts VSV replication but can be targeted by immunotherapy

Author:

Kottke Timothy,Tonne Jason,Evgin Laura,Driscoll Christopher B.ORCID,van Vloten JacobORCID,Jennings Victoria A.,Huff Amanda L.,Zell Brady,Thompson Jill M.,Wongthida Phonphimon,Pulido Jose,Schuelke Matthew R.ORCID,Samson Adel,Selby Peter,Ilett ElizabethORCID,McNiven Mark,Roberts Lewis R.ORCID,Borad Mitesh J.,Pandha Hardev,Harrington KevinORCID,Melcher Alan,Vile Richard G.ORCID

Abstract

AbstractIn our clinical trials of oncolytic vesicular stomatitis virus expressing interferon beta (VSV-IFNβ), several patients achieved initial responses followed by aggressive relapse. We show here that VSV-IFNβ-escape tumors predictably express a point-mutated CSDE1P5S form of the RNA-binding Cold Shock Domain-containing E1 protein, which promotes escape as an inhibitor of VSV replication by disrupting viral transcription. Given time, VSV-IFNβ evolves a compensatory mutation in the P/M Inter-Genic Region which rescues replication in CSDE1P5S cells. These data show that CSDE1 is a major cellular co-factor for VSV replication. However, CSDE1P5S also generates a neo-epitope recognized by non-tolerized T cells. We exploit this predictable neo-antigenesis to drive, and trap, tumors into an escape phenotype, which can be ambushed by vaccination against CSDE1P5S, preventing tumor escape. Combining frontline therapy with escape-targeting immunotherapy will be applicable across multiple therapies which drive tumor mutation/evolution and simultaneously generate novel, targetable immunopeptidomes associated with acquired treatment resistance.

Funder

U.S. Department of Health & Human Services | National Institutes of Health

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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