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◆ Molecular cell2026-08-28

HoT auto-blinking probes enable real-time, super-resolution chromatin imaging in live cells and tissues.

Aiping Wang, Shanshan Liu, Heng Shi, Mikhail Rotkevich, Carlotta Viana, Hui Zhong, Limei Zhong, Lingkuan Meng, Yanwu Li, Guirong Chen, Xiaoming Zhu, Zhenzhen Ma, Bing Fu, Alvaro Castells-Garcia, Jie Zhang, Hongyan Sun, Maria Pia Cosma

原始摘要(英文原文)· Original abstract
Single-molecule localization microscopy (SMLM) enables visualization of chromatin architecture at nanoscale resolution. However, high-performance DNA probes suitable for SMLM in both live cells and tissues remain limited. We developed Hoechst-6-Carboxytetramethylrhodamine (6-TAMRA) derivative (HoT) probes-rhodamine-based derivatives conjugated to a Hoechst moiety-through structural fine-tuning of rhodamine spirocyclization. HoTs are self-assembling, auto-blinking probes with excellent photostability and high temporal resolution. They permeate live cells, enabling long-term, real-time nanoscopic chromatin imaging in live and fixed cells and in tissue sections. In live cells, we identified nanoscale features in the 3D organization of chromatin and quantified DNA fiber kinetics at high resolution. We quantified DNA compaction in single cells within retinal and colon cancer sections. OligoSTORM (stochastic optical reconstruction microscopy)-labeled gene loci can be visualized and measured within their HoT-labeled chromatin footprints. Our work provides powerful tools for investigating chromatin structure and functions in living cells and tissues, with applications ranging from cancer diagnosis to retinal regeneration.
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HoT auto-blinking probes enable real-time, super-resolution chromatin imaging in live cells and tissues. — 科研速览 Science Skim