A mosaic analysis system with Cre or Tomato expression in the mouse.

Wang, Qun; Lin, Yen-Yu; Zhang, Baojun; Wu, Jianxuan; Roy, Sumedha; Ratiu, Jeremy J; Xu, Yanping; Dai, Meifang et al. · Proc Natl Acad Sci U S A · 2020

basic_science · Level V

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Abstract

Somatic mutations are major genetic contributors to cancers and many other age-related diseases. Many disease-causing somatic mutations can initiate clonal growth prior to the appearance of any disease symptoms, yet experimental models that can be used to examine clonal abnormalities are limited. We describe a mosaic analysis system with Cre or Tomato (MASCOT) for tracking mutant cells and demonstrate its utility for modeling clonal hematopoiesis. MASCOT can be induced to constitutively express either Cre-GFP or Tomato for lineage tracing of a mutant and a reference group of cells simultaneously. We conducted mosaic analysis to assess functions of the <i>Id3</i> and/or <i>Tet2</i> gene in hematopoietic cell development and clonal hematopoiesis. Using Tomato-positive cells as a reference population, we demonstrated the high sensitivity of this system for detecting cell-intrinsic phenotypes during short-term or long-term tracking of hematopoietic cells. Long-term tracking of <i>Tet2</i> mutant or <i>Tet2/Id3</i> double-mutant cells in our MASCOT model revealed a dynamic shift from myeloid expansion to lymphoid expansion and subsequent development of lymphoma. This work demonstrates the utility of the MASCOT method in mosaic analysis of single or combined mutations, making the system suitable for modeling somatic mutations identified in humans.

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