Precision CRISPR annotation of the functional enhancer landscape in primary human T cells.
Precise modulation of T cell function through engineering the non-coding genome holds great promise for advancing next-generation immunotherapies.
APA
Wang P, Giles JR, et al. (2026). Precision CRISPR annotation of the functional enhancer landscape in primary human T cells.. bioRxiv : the preprint server for biology. https://doi.org/10.64898/2026.01.27.702006
MLA
Wang P, et al.. "Precision CRISPR annotation of the functional enhancer landscape in primary human T cells.." bioRxiv : the preprint server for biology, 2026.
PMID
41659577
Abstract
Precise modulation of T cell function through engineering the non-coding genome holds great promise for advancing next-generation immunotherapies. However, robust high-throughput approaches to annotate functional cis-regulatory elements (CRE) in human T cells remain limited. Here, we developed a simple and highly efficient CRISPR interference (CRISPRi) perturbation platform to systematically annotate CREs in human primary T cells. Using this platform, we identified novel CREs controlling , , and expression. Combinatorial CRE perturbations revealed synergistic CRE pairs that fine-tune and expression, while Cas9-indel-based mutagenesis pinpointed the critical nucleotides within each enhancer that are essential for their activity. Functional experiments demonstrated that CRE-edited outperformed conventional total gene knockout in enhancing CAR T cell anti-tumor efficacy. Moreover, CRE editing of and repressed PD-1 and TIM-3 expression in human tumor-infiltrating lymphocyte CD8 T cells, highlighting regulatory role of these CREs in disease relevant exhausted T cells. Together, this approach offers a compact CRISPRi platform that enables high-throughput dissection of functionally relevant non-coding genomic regions in T cells, providing insights for mechanistic studies and precision genome engineering of advanced cellular therapies.
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