Multiplexed and Quantitative Imaging of Live‐Cell Membrane Proteins by a Precise and Controllable DNA‐Encoded Amplification Reaction

Author:

Diao Nannan12,Hou Jianing12,Peng Xinyu13,Wang Yaru14,He Axin12,Gao Haiyan25,Yang Linlin1,Guo Pei2,Wang Junyan2,Han Da12ORCID

Affiliation:

1. Institute of Molecular Medicine and Shanghai Key Laboratory for Nucleic Acid Chemistry and Nanomedicine State Key Laboratory of Systems Medicine for Cancer Renji Hospital School of Medicine Shanghai Jiao Tong University Shanghai 200127 China

2. Zhejiang Cancer Hospital Hangzhou Institute of Medicine (HIM) Chinese Academy of Sciences Hangzhou Zhejiang 310022 China

3. College of Life Science Shanghai University Shanghai 200444 China

4. College of Chemistry and Materials Science Shanghai Normal University Shanghai 200234 China

5. School of Molecular Medicine Hangzhou Institute for Advanced Study University of Chinese Academy of Sciences Hangzhou Zhejiang 310024 China

Abstract

AbstractAmplifying DNA conjugated affinity ligands can improve the sensitivity and multiplicity of cell imaging and play a crucial role in comprehensively deciphering cellular heterogeneity and dynamic changes during development and disease. However, the development of one‐step, controllable, and quantitative DNA amplification methods for multiplexed imaging of live‐cell membrane proteins is challenging. Here, we introduce the template adhesion reaction (TAR) method for assembling amplifiable DNA sequences with different affinity ligands, such as aptamers or antibodies, for amplified and multiplexed imaging of live‐cell membrane proteins with high quantitative fidelity. The precisely controllable TAR enables proportional amplification of membrane protein targets with variable abundances by modulating the concentration ratios of hairpin templates and primers, thus allowing sensitive visualization of multiple membrane proteins with enhanced signal‐to‐noise ratios (SNRs) without disturbing their original ratios. Using TAR, we achieved signal‐enhanced imaging of six proteins on the same live‐cell within 1–2 h. TAR represents an innovative and programmable molecular toolkit for multiplexed profiling of membrane proteins in live‐cells.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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