清脆的
增强子
Cas9
计算生物学
染色质
合作性
转录调控
抄写(语言学)
转录因子
基因表达调控
激活剂(遗传学)
化学
基因
生物
遗传学
语言学
哲学
作者
Rui Chen,Xinyao Shi,Xiangwen Yao,Tong Gao,Guangyu Huang,Duo Ning,Zemin Cao,Yi-Chun Xu,Weizheng Liang,Simon Zhongyuan Tian,Qionghua Zhu,Liang Fang,Meizhen Zheng,Yuhui Hu,Huanhuan Cui,Wei Chen
标识
DOI:10.1038/s41467-024-51694-y
摘要
CRISPR/Cas-based transcriptional activators can be enhanced by intrinsically disordered regions (IDRs). However, the underlying mechanisms are still debatable. Here, we examine 12 well-known IDRs by fusing them to the dCas9-VP64 activator, of which only seven can augment activation, albeit independently of their phase separation capabilities. Moreover, modular domains (MDs), another class of multivalent molecules, though ineffective in enhancing dCas9-VP64 activity on their own, show substantial enhancement in transcriptional activation when combined with dCas9-VP64-IDR. By varying the number of gRNA binding sites and fusing dCas9-VP64 with different IDRs/MDs, we uncover that optimal, rather than maximal, cis-trans cooperativity enables the most robust activation. Finally, targeting promoter-enhancer pairs yields synergistic effects, which can be further amplified via enhancing chromatin interactions. Overall, our study develops a versatile platform for efficient gene activation and sheds important insights into CRIPSR-based transcriptional activators enhanced with multivalent molecules. Multivalent interactions are crucial in transcriptional regulation. Here, by integrating specific multivalent molecules into dCas9-based activators, the authors provide valuable strategies to refine CRISPRa applications and achieve highly efficient gene transcription.
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