A group of nucleic acid aptamers specifically recognizing β-bungarotoxin and its application
A technology of bungarotoxin and nucleic acid aptamer, which is applied in recombinant DNA technology, microbial determination/inspection, DNA/RNA fragments, etc., and can solve the problems of poor stability, weak affinity, and insufficient adsorption of ELISA plate. , to achieve the effect of small molecular weight, short cycle, easy chemical modification and labeling
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Embodiment 1
[0032] Example 1 Screening of nucleic acid aptamers specifically binding to β-bungarotoxin
[0033]1. Construct a random single-stranded DNA library and primers: design a random single-stranded DNA library with a fixed sequence of 20 bases at both ends and a random sequence of 40 bases in the middle, namely: 5′-AGCAGCACAGAGGTCAGATG-N40-CCTATGCGTGCTACCGTGAA-3 '. Where N represents any one of bases A, G, C, and T, and N40 represents a random fragment length of 40 bases. Primer 1: 5'-fluorescein-AGCAGCACAGAGGTCAGATG-3', Primer 2: 5'-TTCACGGTAGCACGCATAGG-phosphate group-3'. The library and primers were synthesized by Shanghai Sangon Biotechnology Co., Ltd. Random library with binding buffer (20mMHEPES, pH7.4; 150mMNaCl; 5mMKCl; 2mMMgCl 2 ;2mM CaCl 2 ), primers use ddH 2 O was prepared into a 100 μM stock solution and stored at -20°C for later use.
[0034] 2. SELEX screening: Prepare β-bungarotoxin with carbonate buffer (CBS, pH 9.6) to a concentration of 10 μg / mL, take 100 ...
Embodiment 2
[0037] Example 2 Determination of the binding force of each round of nucleic acid aptamer library and β-bungarotoxin by digesting fiber membrane method
[0038] Nitrocellulose membranes (HAWP02500nitrocellulosefilters, Millipore, 0.22μm) were soaked in 0.5M KOH solution for 30min, then washed with ddH 2 O was fully washed, then placed in the binding buffer, shaken for 40min, placed in a new binding buffer, and stored at 4°C. Each round of fluorescein-labeled ssDNA library was prepared to a concentration of 1 μM, 10 μL was added to 1 mL of binding buffer, placed at 90 ° C for 10 min, then placed on ice for 10 min, and at room temperature for 10 min. Add 4 μL of 1 mg / mL β-bungarotoxin, incubate at room temperature for 1 h, and control without adding β-bungarotoxin, then filter the membrane and wash the filter membrane with 1 mL of binding buffer. The filtrates were combined, and the fluorescence intensity of the filtrate was measured with a PerkinElmer LS55 fluorescence spectro...
Embodiment 3
[0039] Example 3 Determination of the dissociation constant Kd value of the nucleic acid aptamer by the fluorescence anisotropy method
[0040] Fluorescence-labeled aptamers βB-1, βB-19, βB-32, and βB-20 were artificially synthesized, and 4 μL of aptamers (1 μM) were added to 2 mL of binding buffer to measure the fluorescence anisotropy value. Then titrate with different concentrations of β-bungarotoxin, and measure the fluorescence anisotropy value at each concentration. Determination parameters are the same as in Example 2. Use the concentration of β-bungarotoxin as the abscissa, and the increment of the fluorescence anisotropy value as the ordinate, and use SigmaPlot10.0 software to do nonlinear regression to analyze the dissociation constant (Kd) value of the aptamer.
[0041] The Kd values of the aptamers βB-1 and βB-20 were both lower than 100nM, 65.9nM and 83.8nM respectively, and the measurement results were as follows image 3 shown. The Kd value of βB-19 is 540 ...
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