Identification of the Binding Site between Aptamer sgc8c and PTK7.
Jianghuai ChenJiaxuan HeTao BingYawei FengYifan LyuMing LeiWeihong TanPublished in: Analytical chemistry (2024)
Aptamers are single-stranded RNA or DNA molecules that can specifically bind to targets and have found broad applications in cancer early-stage detection, accurate drug delivery, and precise treatment. Although various aptamer screening methods have been developed over the past several decades, the accurate binding site between the target and the aptamer cannot be characterized during a typical aptamer screening process. In this research, we chose a widely used aptamer screened by our group, sgc8c, and its target protein tyrosine kinase 7 (PTK7) as the model aptamer and target and tried to determine the binding site between aptamer sgc8c and PTK7. Through sequential protein truncation, we confirmed that the exact binding site of sgc8c was within the region of Ig 3 to Ig 4 in the extracellular domain of PTK7. Using in vitro expressed Ig (3-4), we successfully acquired the crystal of an sgc8c-Ig (3-4) binding complex. The possible sgc8c-binding amino acid residues on PTK7 and PTK7-binding nucleotide residues on sgc8c were further identified and simulated by mass spectrometry and molecular dynamics simulation and finally verified by aptamer/protein truncation and mutation.
Keyphrases
- gold nanoparticles
- sensitive detection
- label free
- magnetic nanoparticles
- amino acid
- tyrosine kinase
- binding protein
- early stage
- mass spectrometry
- molecular dynamics simulations
- high resolution
- squamous cell carcinoma
- protein protein
- epidermal growth factor receptor
- nucleic acid
- loop mediated isothermal amplification
- quantum dots
- molecular docking
- transcription factor
- lymph node
- locally advanced