Systematic discovery of CRISPR-boosted CAR T cell immunotherapies

P Paul Datlinger E Eugenia V. Pankevich C Cosmas D. Arnold N Nicole Pranckevicius J Jenny Lin D Daria Romanovskaia M Moritz Schaefer F Francesco Piras A Anne-Christine Orts A Amelie Nemc P Paulina N. Biesaga M Michelle Chan T Teresa Neuwirth A Artem V. Artemov W Wentao Li S Sabrina Ladstätter T Thomas Krausgruber C Christoph Bock

Abstract

Abstract Chimeric antigen receptor (CAR) T cell therapy has shown remarkable success in treating blood cancers, but CAR T cell dysfunction remains a common cause of treatment failure 1 . Here we present CELLFIE, a CRISPR screening platform for enhancing CAR T cells across multiple clinical objectives. We performed genome-wide screens in human primary CAR T cells, with readouts capturing key aspects of T cell biology, including proliferation, target cell recognition, activation, apoptosis and fratricide, and exhaustion. Screening hits were prioritized using a new in vivo CROP-seq 2 method in a xenograft model of human leukaemia, establishing several gene knockouts that boost CAR T cell efficacy. Most notably, we discovered that RHOG knockout is a potent and unexpected CAR T cell enhancer, both individually and together with FAS knockout, which was validated across multiple in vivo models, CAR designs and sample donors, and in patient-derived cells. Demonstrating the versatility of the CELLFIE platform, we also conducted combinatorial CRISPR screens to identify synergistic gene pairs and saturation base-editing screens to characterize RHOG variants. In summary, we discovered, validated and biologically characterized CRISPR-boosted CAR T cells that outperform standard CAR T cells in widely used benchmarks, establishing a foundational resource for optimizing cell-based immunotherapies.

Article Details

Journal Nature
Volume / Issue Vol. 646, Issue 8086
Published October 23, 2025
Pages 963-972
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (18)

P

Paul Datlinger

E

Eugenia V. Pankevich

C

Cosmas D. Arnold

N

Nicole Pranckevicius

J

Jenny Lin

D

Daria Romanovskaia

M

Moritz Schaefer

F

Francesco Piras

A

Anne-Christine Orts

A

Amelie Nemc

P

Paulina N. Biesaga

M

Michelle Chan

T

Teresa Neuwirth

A

Artem V. Artemov

W

Wentao Li

S

Sabrina Ladstätter

T

Thomas Krausgruber

C

Christoph Bock