figshare
Browse

Data from Cancers from Novel Pole-Mutant Mouse Models Provide Insights into Polymerase-Mediated Hypermutagenesis and Immune Checkpoint Blockade

Posted on 2023-03-31 - 04:06
Abstract

POLE mutations are a major cause of hypermutant cancers, yet questions remain regarding mechanisms of tumorigenesis, genotype–phenotype correlation, and therapeutic considerations. In this study, we establish mouse models harboring cancer-associated POLE mutations P286R and S459F, which cause rapid albeit distinct time to cancer initiation in vivo, independent of their exonuclease activity. Mouse and human correlates enabled novel stratification of POLE mutations into three groups based on clinical phenotype and mutagenicity. Cancers driven by these mutations displayed striking resemblance to the human ultrahypermutation and specific signatures. Furthermore, Pole-driven cancers exhibited a continuous and stochastic mutagenesis mechanism, resulting in intertumoral and intratumoral heterogeneity. Checkpoint blockade did not prevent Pole lymphomas, but rather likely promoted lymphomagenesis as observed in humans. These observations provide insights into the carcinogenesis of POLE-driven tumors and valuable information for genetic counseling, surveillance, and immunotherapy for patients.

Significance:

Two mouse models of polymerase exonuclease deficiency shed light on mechanisms of mutation accumulation and considerations for immunotherapy.

See related commentary by Wisdom and Kirsch p. 5459

CITE THIS COLLECTION

DataCite
No result found
or
Select your citation style and then place your mouse over the citation text to select it.

FUNDING

Stand Up To Cancer

Bristol-Myers Squibb

CIHR

NIH

SHARE

email

Usage metrics

Cancer Research

AUTHORS (36)

  • Melissa A. Galati
    Karl P. Hodel
    Miki S. Gams
    Sumedha Sudhaman
    Taylor Bridge
    Walter J. Zahurancik
    Nathan A. Ungerleider
    Vivian S. Park
    Ayse B. Ercan
    Lazar Joksimovic
    Iram Siddiqui
    Robert Siddaway
    Melissa Edwards
    Richard de Borja
    Dana Elshaer
    Jiil Chung
    Victoria J. Forster
    Nuno M. Nunes
    Melyssa Aronson
    Xia Wang
need help?