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A label-free bioluminescent sensor for real-time monitoring polynucleotide kinase activity
Jiao Du1, Qinfeng Xu, Xiaoquan Lu
1Key Laboratory of Bioelectrochemistry & Environmental analysis of Gansu Province, College of Chemistry & Chemical Engineering, Northwest Normal University , Lanzhou 730070, China.
Abstract:
Polynucleotide kinase (PNK) plays a crucial role in maintaining the genomic stability of cells and is becoming a potential target in the radio-therapeutic treatment of cancers. The fluorescent method is usually used to measure the PNK activity, but it is impossible to obtain the real-time monitoring without the employment of the labeled DNA probes. Here, we report a label-free bioluminescent sensor for PNK activity assay through real-time monitoring of the phosphorylation-dependent DNA ligation reaction. In this bioluminescent sensor, two hairpin DNA probes with 5'-protruding terminal are designed as the phosphate acceptor, and the widely used phosphate donor of ATP is substituted by dCTP. In the absence of PNK, the ligation reaction cannot be triggered due to the lack of 5'-phosphoryl groups in the probes, and the background signal is negligible. With the addition of PNK, the phosphorylation-ligation reaction of the probes is initiated with the release of AMP, and the subsequent conversion of AMP to ATP leads to the generation of distinct bioluminescence signal. The PNK activity assay can be performed in real time by continuously monitoring the bioluminescence signal. This bioluminescent sensor is much simpler, label-free, cost-effective, and free from the autofluorescence interference of biological matrix, and can be further used for quantitative, kinetic, and inhibition assay.
Insights
This study introduces a novel label-free bioluminescent sensor for real-time monitoring of polynucleotide kinase (PNK) activity. The assay offers a simpler, cost-effective method for PNK detection, crucial for cancer radio-therapy research.
Area of Science:
- Biochemistry
- Molecular Biology
- Biotechnology
Background:
- Polynucleotide kinase (PNK) is vital for genomic stability and a target in cancer radio-therapy.
- Current fluorescent methods for PNK activity assay lack real-time monitoring capabilities due to reliance on labeled DNA probes.
Purpose of the Study:
- To develop a label-free bioluminescent sensor for real-time PNK activity assay.
- To enable simpler, cost-effective, and interference-free monitoring of PNK activity.
Main Methods:
- Designed hairpin DNA probes acting as phosphate acceptors.
- Utilized dCTP as a phosphate donor instead of ATP.
- Monitored phosphorylation-dependent DNA ligation via bioluminescence signal generation.
Main Results:
- The sensor provides real-time monitoring of PNK activity.
- Achieved negligible background signal in the absence of PNK.
- Demonstrated a distinct bioluminescence signal upon PNK-catalyzed phosphorylation and ligation.
Conclusions:
- The developed bioluminescent sensor is a simple, label-free, and cost-effective tool for PNK activity assays.
- This method overcomes limitations of fluorescent assays, offering real-time kinetic and inhibition studies.
- The sensor is suitable for quantitative analysis and is free from biological matrix autofluorescence interference.

