Generation of a CRISPR activation mouse that enables modelling of aggressive lymphoma and interrogation of venetoclax resistance.

Deng, Yexuan; Diepstraten, Sarah T; Potts, Margaret A; Giner, Göknur; Trezise, Stephanie; Ng, Ashley P; Healey, Gerry; Kane, Serena R et al. · Nat Commun · 2022

basic_science · Level V

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Abstract

CRISPR technologies have advanced cancer modelling in mice, but CRISPR activation (CRISPRa) methods have not been exploited in this context. We establish a CRISPRa mouse (dCas9a-SAM<sup>KI</sup>) for inducing gene expression in vivo and in vitro. Using dCas9a-SAM<sup>KI</sup> primary lymphocytes, we induce B cell restricted genes in T cells and vice versa, demonstrating the power of this system. There are limited models of aggressive double hit lymphoma. Therefore, we transactivate pro-survival BCL-2 in Eµ-Myc<sup>T/+</sup>;dCas9a-SAM<sup>KI/+</sup> haematopoietic stem and progenitor cells. Mice transplanted with these cells rapidly develop lymphomas expressing high BCL-2 and MYC. Unlike standard Eµ-Myc lymphomas, BCL-2 expressing lymphomas are highly sensitive to the BCL-2 inhibitor venetoclax. We perform genome-wide activation screens in these lymphoma cells and find a dominant role for the BCL-2 protein A1 in venetoclax resistance. Here we show the potential of our CRISPRa model for mimicking disease and providing insights into resistance mechanisms towards targeted therapies.

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