生物
转录组
编码
基因
免疫系统
T细胞
计算生物学
遗传学
功能(生物学)
基因表达调控
调节性T细胞
系统生物学
基因调控网络
T细胞受体
调节器
表型
人类白细胞抗原
调节基因
人类遗传学
细胞
基因表达谱
稳健性(进化)
基因表达
细胞生物学
效应器
人类疾病
获得性免疫系统
疾病
人类基因组
转录调控
作者
Ronghui Zhu,Emma Dann,Jun Yan,Justine Reyes Retana,Ryunosuke Goto,Reese C Guitche,Lillian Petersen,Mineto Ota,Austin Hartman,Theodore L. Roth,Ansuman T. Satpathy,Jonathan K. Pritchard,Alexander Marson
出处
期刊:Cell
[Cell Press]
日期:2026-08-01
被引量:17
标识
DOI:10.1016/j.cell.2026.08.002
摘要
Abstract Gene regulatory networks encode the fundamental logic of cellular functions, but systematic network mapping remains challenging, especially in cell states relevant to human biology and disease. Here, we perturbed all expressed genes across 22 million primary human CD4+ T cells from four donors and developed a probe-based perturb-seq platform to measure the transcriptome effects in cells at rest and after stimulation. These data allow us to map genes that regulate known and novel pathways, including novel regulators of cytokine production. Importantly, active regulators and the gene programs they control change dramatically across stimulation conditions. Perturbation signatures enabled us to model T cell states observed in population-scale transcriptomic atlases, nominating regulators of Th1 and Th2 polarization and of age-related T cell phenotypes. Finally, we leveraged perturb-seq to implicate context-specific gene regulatory pathways in autoimmune disease risk. Our data provide a foundational resource to decode human immune function and genetic variation and for new approaches to study gene regulatory networks.
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