Affiliation:
1. Institute for Materials Science and Devices School of Materials Science and Engineering Suzhou University of Science and Technology Kerui Road Suzhou 215009 P.R. China
2. School of Environmental Science and Engineering Suzhou University of Science and Technology Kerui Road Suzhou 215009 P.R. China
3. Jiangsu Key Laboratory for Biomaterials and Devices Department of Biological Science and Medical Engineering Southeast University Nanjing 210009 P. R. China
Abstract
AbstractDNA methyltransferase is significant in cellular activities and gene expression, and its aberrant expression is closely linked to various cancers during initiation and progression. Currently, there is a great demand for reliable and label‐free techniques for DNA methyltransferase evaluation in tumor diagnosis and cancer therapy. Herein, a low‐background fluorescent RNA aptamer‐based sensing approach for label‐free quantification of cytosine‐guanine (CpG) dinucleotides methyltransferase (M.SssI) is reported. The fluorogenic light‐up RNA aptamers‐based strategy exhibits high selectivity via restriction endonuclease, padlock‐based recognition, and RNA transcription. By combining rolling circle amplification (RCA), and RNA transcription with fluorescence response of RNA aptamers of Spinach‐dye compound, the proposed platform exhibited efficiently ultrahigh sensitivity toward M.SssI. Eventually, the detection can be achieved in a linear range of 0.02–100 U mL−1 with a detection limit of 1.6 × 10−3 U mL−1. Owing to these superior features, the method is further applied in serum samples spiked M.SssI, which delivers a recovery ranging from 92.0 to 107.0% and a relative standard deviation <7.0%, providing a promising and practical tool for determining M.SssI in complex biological matrices.
Funder
National Natural Science Foundation of China
National Key Research and Development Program of China
Natural Science Foundation of Jiangsu Province