Maturation and persistence of CAR T cells derived from human pluripotent stem cells via chemical inhibition of G9a/GLP

通过化学抑制G9a/GLP促进人多能干细胞来源的CAR T细胞的成熟和持久性

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作者:Ran Jing ,Marcelo Falchetti ,Tianxiao Han ,Mohamad Najia ,Luca T Hensch ,Eleanor Meader ,Edroaldo Lummertz da Rocha ,Martin Kononov ,Stephanie Wang ,Trevor Bingham ,Zhiheng Li ,Yunliang Zhao ,Katie Frenis ,Caroline Kubaczka ,Song Yang ,Deepak Jha ,Gabriela F Rodrigues-Luiz ,R Grant Rowe ,Thorsten M Schlaeger ,Marcela V Maus ,Trista E North ,Leonard I Zon ,George Q Daley

Abstract

Elucidating mechanisms of T cell development can guide in vitro T cell differentiation from induced pluripotent stem cells (iPSCs) and facilitate off-the-shelf T cell-based immunotherapies. Using a stroma-free human iPSC-T cell differentiation platform, we screened for epigenetic modulators that influence T cell specification and identified the H3K9-directed histone methyltransferases G9a/GLP as repressors of T cell fate. We show that G9a/GLP inhibition during specific time windows of differentiation of hematopoietic stem and progenitor cells (HSPCs) skews cell fates toward lymphoid lineages. Inhibition of G9a/GLP promotes the production of lymphoid cells during zebrafish embryonic hematopoiesis, demonstrating the evolutionary conservation of G9a/GLP function. Importantly, chemical inhibition of G9a/GLP facilitates the generation of mature iPSC-T cells that bear transcriptional similarity to peripheral blood αβ T cells. When engineered to express chimeric antigen receptors, the epigenetically engineered iPSC-T cells exhibit enhanced effector functions in vitro and durable, persistent antitumor activity in a xenograft tumor-rechallenge model.

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