Primer group, probe or probe group, method and reagent box and micro-array for predicting alcohol degradation ability and hangover possibility
A primer set and probe set technology, applied in the field of undisclosed energy, can solve the problems of undisclosed alcohol degradation ability and hangover possibility primer set, undisclosed alcohol degradation ability and hangover possibility, etc.
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Embodiment 1
[0105] Example 1: Selection of primers for predicting alcohol degradation ability and hangover possibility
[0106] In Example 1, primers for predicting alcohol degradation ability and hangover possibility were selected. To this end, the ALDH2 gene sequence, CYP2E1 gene sequence, and ADH2 gene sequence were obtained from Genbank, and DNASTAR program was used to select target sequences for predicting alcohol degradation ability and hangover possibility: exon XII region of ALDH2 gene, 5 '-control region, and exon III region and IX region of ADH2 gene.
[0107] As a result, 7 sets of oligonucleotide primer sets were designed: the oligonucleotide primer set having the sequence described in SEQ ID NO: 1 and 2, the oligonucleotide primer set having the sequence described in SEQ ID NO: 3 and 4 Nucleotide primer set, there is the oligonucleotide primer set of sequence as described in SEQ ID NO:5 and 6, has the oligonucleotide primer set of sequence as described in SEQ ID NO:7 and 8,...
Embodiment 2
[0108] Example 2: Amplification of genes used for predicting alcohol degradation ability and hangover possibility with the primer set of the present invention because
[0109] The 7 sets of primers designed in Example 1 were used to amplify the genes used to predict alcohol degradation ability and hangover possibility.
[0110] 1) Extract the gDNA of the mouth cells
[0111] Saliva was collected from each test subject, from which gDNA was extracted according to the Qiagen DNA Mini Kit protocol. Then, the gDNA was quantitatively analyzed with Picogreen dsDNA reagent (Molecular Probes). For quantitative analysis, gDNA was subjected to gel electrophoresis and sequenced (ABI3700) to determine the degree of degradation and nucleotide sequence of the gDNA.
[0112] 2) Target sequence amplification
[0113] The gDNA prepared in 1) was amplified by PCR using the Cy3-labeled primers of Example 1. PCR was performed using 50 μl of the reaction solution by adding 5 μl of the gDNA ...
Embodiment 3
[0114] Example 3: Detection of genes amplified using the primer set of the present invention on a chip
[0115] In Example 3, the PCR product obtained in Example 2 was allowed to hybridize with the probe immobilized on the chip, and the degree of probe-target hybridization was determined to predict alcohol degradation ability and hangover possibility.
[0116] 1) Manufacturing chips
[0117] For making chips, use SiO 2 Wafer (thickness 1,000 Ȧ). The wafer was coated with a mixture of 20% 3-aminopropylethoxysilane (Sigma) and 5% FC4430, baked in an oven at 120° C. for 40 minutes, and rinsed with triple distilled water.
[0118] As oligonucleotide probe solutions to be used in chips, nucleotides were prepared by dissolving amine-modified nucleotides (80 μM, Bioneer) in 9 mM PEG 10000 (Sigma) and 100% formamide (Sigma) solution (final concentration: 20 μM). Use a microarray spotter (spotter) (Cartesian, pisys 5500) and an SMP3 needle (pin) (Arrayit) to print the nucleotide ...
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