Mapping transcription factor functions in astrocytes using in vivo gain-of-function Perturb-seq · L. Zhang et al.
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gain-of-function Perturb-seq Liansheng Zhang1†, Qi Ma1,2†, Xiangrui Kong1†, Weijuan Zou3†, Bo Wang1†, Bin Wu4†, Shicheng Cai1,2, Tao Bai1, Runlin Tan3, Ziji Dai1,2, Xingyu Liu1, Zhiheng Jia1,2, Meimei Zhang5, Tianwen Li6, Yuanyi Zheng3*, Xinde Hu5*, Jianrong Wu3*, Zhengzheng Xu1*, Haibo Zhou1,7,8,9* An in vivo approach combining high-throughput screening with cell type–specific readouts could enable elucidation of genotype- phenotype relationships in complex tissues. We developed an in vivo gain-of-function Perturb-seq platform, termed iGOF– Perturb-seq, to build a functional atlas of ~1000 transcription factors (TFs) in astrocytes, a cell type essential to many brain functions. We then identified cofunctional modules, annotated uncharacterized TFs, and predicted disease-associated TF clusters. …
摘自《科学》(Science)第392卷 第6796期 · 2026年4月23日,L. Zhang et al.。仅引用开头一小段供了解文章,版权归原刊所有,全文请阅读原刊。