Capturing cancer evolution using genetically engineered mouse models (GEMMs)

Trends Cell Biol. 2021 Dec;31(12):1007-1018. doi: 10.1016/j.tcb.2021.07.003. Epub 2021 Aug 13.

Abstract

Initiating from a single cell, cancer undergoes clonal evolution, leading to a high degree of intratumor heterogeneity (ITH). The arising genetic heterogeneity between cancer cells is influenced by exogenous and endogenous forces that shape the composition of clones within tumors. Preclinical mouse models have provided a valuable tool for understanding cancer, helping to build a fundamental understanding of tumor initiation, progression, and metastasis. Until recently, genetically engineered mouse models (GEMMS) of cancer had lacked the genetic diversity found in human tumors, in which evolution may be driven by long-term carcinogen exposure and DNA damage. However, advances in sequencing technology and in our understanding of the drivers of genetic instability have given us the knowledge to generate new mouse models, offering an approach to functionally explore mechanisms of tumor evolution.

Keywords: cancer evolution; mouse models; tumor heterogeneity.

Publication types

  • Research Support, Non-U.S. Gov't
  • Review

MeSH terms

  • Animals
  • Cell Transformation, Neoplastic / genetics
  • Clonal Evolution
  • Disease Models, Animal
  • Humans
  • Mice
  • Neoplasms* / genetics
  • Neoplasms* / pathology