二价(发动机)
染色质
荧光
级联
活体细胞成像
染色体外DNA
DNA
基因组DNA
端粒
生物
生物物理学
DNA测序
计算生物学
遗传学
基因组
分子生物物理学
化学
基因
荧光寿命成像显微镜
A-DNA
作者
Lei Feng,Tao Huang,Yanxi Han,Tian Meng,Duo Wang,Zilong Mei,Yu Ma,Yegang Ma,Jinming Li,Rui Zhang
标识
DOI:10.1002/advs.202513014
摘要
Abstract Genomic loci and genome‐independent DNA exhibit heterogeneous dynamics related to physiological function. Live‐cell imaging of non‐repetitive sequences is essential but limited by low signal‐to‐noise ratio (SNR), restricting accurate identification and dynamic tracking. Here, the development of a BRIGHT (bivalent near‐infrared nanobody‐mediated cascade illumination of genomic loci for high‐SNR tracking) system for non‐repetitive sequence live imaging is reported. BRIGHT employs dCas9‐n×ALFA to target genomic loci and realizes high SNR by triggering cascade‐dependent illumination via bivalent binding and antigen‐dependent illumination of a bivalent near‐infrared fluorescent nanobody targeting ALFA tags (Bi‐NIR‐Fb ALFA ). BRIGHT achieves ≈6.26‐fold and ≈6.76‐fold higher SNR than SunTag and PP7‐PCP in telomere labeling, and enables non‐repetitive DNA imaging with SNR up to 284.84. Furthermore, BRIGHT tracks chromatin dynamics comparably to previous tools, links dynamics and nuclear positioning to transcriptional activity, and detects the distribution and dynamic heterogeneity of extrachromosomal circular DNA (eccDNA). Overall, BRIGHT dramatically improves the SNR of non‐repetitive sequence imaging and offers an innovative tool for studying genomic dynamics and gene regulation.
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