De novo-designed ribozyme-controlled riboregulator for cell-free diagnostics

Y Yu Tang (State Key Laboratory of Natural Product Chemistry, College of Chemistry and Chemical Engineering, School of Materials and Energy) J Jie Luo B Ben Niu (University of British Columbia, Department of Chemistry, 2036 Main Mall, Vancouver, British Columbia V6T 1Z1, Canada) B Binbin Xie Y Yaling Yuan H Hongzhao Yang S Shuang Zhao (Ministry of Education Key Laboratory of Cluster Science, Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials, Frontiers Science Center for High Energy Materials, School of Chemistry and Chemical Engineering, Advanced Technology Research Institute (Jinan), Advanced Research Institute of Multidisciplinary Science) P Ping Huang Z Zuowei Xie (Shenzhen Grubbs Institute and Department of Chemistry) J Jing Sheng R Ruijia Deng J Jingsen Cao J Jiaqi Liu M Meilin Gong S Shuang Xie M Ming Chen K Kai Chang

Abstract

Abstract Cell-free systems have great potential for nucleic acid assays, yet universal onsite diagnostics without preamplification are limited. Here, a universal cell-free diagnostic platform termed TRACKer (Target-Responsive non-preAmplification Cell-free diagnostic Kit) has been developed for detecting multiple respiratory viral RNAs in laboratory and field settings. TRACKer integrates three modules: ribozyme allostery module, riboregulator activation module, and output module. The ribozyme allostery module enables universal target recognition through strand displacement-mediated ribozyme conformational switching. The riboregulator activation module achieves preamplification-free detection via cascade expression of reporter proteins. The output module provides swappable reporter templates for luminescent quantification and lateral flow visualization in diverse scenarios. TRACKer is a robust system that enables rapid ( < 70 min) nucleic acid detection without preamplification and demonstrates attomolar sensitivity (1-10 aM) for six respiratory viruses. Overall, TRACKer presents a promising approach to nucleic acid detection, offering a low-cost and scalable solution with potential applications in point-of-care diagnostics and beyond.

Article Details

Volume / Issue Vol. 17, Issue 1
Published April 08, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

Y

Yu Tang

State Key Laboratory of Natural Product Chemistry, College of Chemistry and Chemical Engineering, School of Materials and Energy

J

Jie Luo

B

Ben Niu

University of British Columbia, Department of Chemistry, 2036 Main Mall, Vancouver, British Columbia V6T 1Z1, Canada

B

Binbin Xie

Y

Yaling Yuan

H

Hongzhao Yang

S

Shuang Zhao

Ministry of Education Key Laboratory of Cluster Science, Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials, Frontiers Science Center for High Energy Materials, School of Chemistry and Chemical Engineering, Advanced Technology Research Institute (Jinan), Advanced Research Institute of Multidisciplinary Science

P

Ping Huang

Z

Zuowei Xie

Shenzhen Grubbs Institute and Department of Chemistry

J

Jing Sheng

R

Ruijia Deng

J

Jingsen Cao

J

Jiaqi Liu

M

Meilin Gong

S

Shuang Xie

M

Ming Chen

K

Kai Chang